Definition and Role of Sustainable Materials in Reaching Global Sustainable Development Goals (SDGs) Completed with Bibliometric Analysis

Authors

  • Risti Ragadhita Universitas Pendidikan Indonesia Author
  • Asep Bayu Dani Nandiyanto Universitas Pendidikan Indonesia Author
  • Obie Farobie IPB University Author
  • Teguh Kurniawan Universitas Sultan Ageng Tirtayasa Author
  • M. Roil Bilad University Brunei Darussalam Author

Keywords:

Bibliometric, Covid, Material design, Material innovation, Sustainable development goals, Sustainable material, Systematic literature review

Abstract

Sustainable materials are essential in achieving the
Sustainable Development Goals (SDGs), particularly in clean
energy, water purification, waste reduction, and green
infrastructure. This study investigates the role of material
innovation in supporting the SDGs using a Systematic
Literature Review (SLR) and bibliometric analysis (from
Scopus database (2015–2025) using keywords “Sustainable
Material,” “Green Material,” and “SDGs”). The findings
showed a growing research trend, especially after the
COVID-19 pandemic, with significant contributions from
chemistry, engineering, and environmental sciences.
Materials like nanomaterials, biomaterials, biodegradable
polymers, and waste-derived products contribute to SDG 6,
7, 9, 12, and 13. Innovations such as green nanotechnology,
bio-based materials, and circular material design show
strong potential to address global sustainability challenges.
These materials not only support emission reduction and
waste valorization but also encourage green job creation and
sustainable production. This study highlights
interdisciplinary pathways to align material science with
sustainable development.

References

Acharjee, S. A., Gogoi, B., Bharali, P., Sorhie, V., and Alemtoshi, B. W. (2024). Recent trends in

the development of Polyhydroxyalkanoates (PHAs) based biocomposites by blending

with different bio-based polymers. Journal of Polymer Research, 31(4), 98.

Ahmed, M., and Mohammed, K. I. (2024). New frontiers in solid-state and material science

for manufacturing and technological growth. Journal of Basics and Applied Sciences

Research, 2(4), 38-43.

Aït-Kaddour, A., Hassoun, A., Tarchi, I., Loudiyi, M., Boukria, O., Cahyana, Y., ... and Khwaldia,

K. (2024). Transforming plant-based waste and by-products into valuable products using

various “Food Industry 4.0” enabling technologies: A literature review. Science of the

Total Environment, 176872.

Al Husaeni, D.F., and Nandiyanto, A.B.D. (2022). Bibliometric using VOSviewer with publish or

perish (using google scholar data): From step-by-step processing for users to the

practical examples in the analysis of digital learning articles in pre and post covid-19

pandemic. ASEAN Journal of Science and Engineering, 2(1), 19-46.

Al Husaeni, D.N., and Al Husaeni, D.F. (2022). How to calculate bibliometric using VOSviewer

with Publish or Perish (using Scopus data): Science education keywords. Indonesian

Journal of Educational Research and Technology, 2(3), 247-274.

Alkhalaf, M. I., Hussein, R. H., and Hamza, A. (2020). Green synthesis of silver nanoparticles

by Nigella sativa extract alleviates diabetic neuropathy through anti-inflammatory and

antioxidant effects. Saudi Journal of Biological Sciences, 27(9), 2410-2419.

Amponsah, O., Nopuo, P. S. A., Manga, F. A., Catli, N. B., and Labus, K. (2025). Future-Oriented

Biomaterials Based on Natural Polymer Resources: Characteristics, Application

Innovations, and Development Trends. International Journal of Molecular

Sciences, 26(12), 5518.

Anastas, P. T., and Warner, J. C. (1998). Principles of green chemistry. Green chemistry: Theory

and practice, 29, 14821-14842.

Apriliani, A., Waahyudin, C., Ramdani, F.T., Martin, A.Y., Syahrudin, D., Hernawan, D., and

Salbiah, E. (2026). Techno-economic analysis of sawdust-based trash cans and their

contribution to indonesia’s green tourism policy and the sustainable development

goals (SDGs). ASEAN Journal for Science and Engineering in Materials, 5(1), 17-36.

Arokiyaraj, S., Arasu, M. V., Vincent, S., Prakash, N. U., Choi, S. H., Oh, Y. K., and Kim, K. H.

(2014). Rapid green synthesis of silver nanoparticles from Chrysanthemum indicum L and

its antibacterial and cytotoxic effects: an in vitro study. International Journal of

Nanomedicine, 9, 379-388.

Arunachalam, K. D., Annamalai, S. K., and Hari, S. (2013). One-step green synthesis and

characterization of leaf extract-mediated biocompatible silver and gold nanoparticles

from Memecylon umbellatum. International Journal of Nanomedicine, 1307-1315.

Awalussillmi, I., Febriyana, K.R., Padilah, N., and Saadah, N.A. (2023). Efforts to improve

sustainable development goals (SDGs) through education on diversification of food

using infographic: Animal and vegetable protein. ASEAN Journal of Agricultural and

Food Engineering, 2(2), 113-120.

Banigo, A. T., Iwuji, S. C., and Iheaturu, N. C. (2019). Application of biomaterials in tissue

engineering: a review. Journal of Chemical and Pharmaceutical Research, 11(4), 1-16.

Barai, A. C., Paul, K., Dey, A., Manna, S., Roy, S., Bag, B. G., and Mukhopadhyay, C. (2018).

Green synthesis of Nerium oleander-conjugated gold nanoparticles and study of its in

vitro anticancer activity on MCF-7 cell lines and catalytic activity. Nano Convergence, 5,

-9.

Baranwal, J., Barse, B., Fais, A., Delogu, G. L., and Kumar, A. (2022). Biopolymer: A sustainable

material for food and medical applications. Polymers, 14(5), 983.

Basnur, J., Putra, M.F.F., Jayusman, S.V.A., and Zulhilmi, Z. (2024). Sustainable packaging:

Bioplastics as a low-carbon future step for the sustainable development goals (SDGs).

ASEAN Journal for Science and Engineering in Materials, 3(1), 51-58.

Cai, W., Weng, X., and Chen, Z. (2019). Highly efficient removal of antibiotic rifampicin from

aqueous solution using green synthesis of recyclable nano-Fe3O4. Environmental

Pollution, 247, 839-846.

Cesário, M. T., Raposo, R. S., de Almeida, M. C. M., van Keulen, F., Ferreira, B. S., and da

Fonseca, M. M. R. (2014). Enhanced bioproduction of poly-3-hydroxybutyrate from

wheat straw lignocellulosic hydrolysates. New Biotechnology, 31(1), 104-113.

Chaikittisilp, W., Yamauchi, Y., and Ariga, K. (2022). Material evolution with nanotechnology,

nanoarchitectonics, and materials informatics: what will be the next paradigm shift in

nanoporous materials?. Advanced Materials, 34(7), 2107212.

Chen, L., Yang, M., Chen, Z., Xie, Z., Huang, L., Osman, A. I., ... and Yap, P. S. (2024). Conversion

of waste into sustainable construction materials: A review of recent developments and

prospects. Materials Today Sustainability, 100930.

Chen, L., Yang, M., Chen, Z., Xie, Z., Huang, L., Osman, A. I., ... and Yap, P. S. (2024). Conversion

of waste into sustainable construction materials: A review of recent developments and

prospects. Materials Today Sustainability, 100930.

Crespilho, F. N., Costa, C. M., and Lanceros‐Méndez, S. (2025). Sustainable Battery

Biomaterials. ChemElectroChem, 12(3), e202400530.

Darder, M., Aranda, P., and Ruiz‐Hitzky, E. (2007). Bionanocomposites: a new concept of

ecological, bioinspired, and functional hybrid materials. Advanced Materials, 19(10),

-1319.

Djirong, A., Jayadi, K., Abduh, A., Mutolib, A., Mustofa, R.F., and Rahmat, A. (2024).

Assessment of student awareness and application of eco-friendly curriculum and

technologies in Indonesian higher education for supporting sustainable development

goals (SDGs): A case study on environmental challenges. Indonesian Journal of Science

and Technology, 9(3), 657-678.

Dobrzański, L. A., Pawlyta, M., and Hudecki, A. (2011). Conceptual study on a new generation

of the high-innovative advanced porous and composite nanostructural functional

materials with nanofibers. Journal of Achievements in Materials and Manufacturing

Engineering, 49(2), 550-565.

Elfakhri, F., Alkahtani, R., Li, C., and Khaliq, J. (2022). Influence of filler characteristics on the

performance of dental composites: A comprehensive review. Ceramics

International, 48(19), 27280-27294.

Espinosa, S. A., Bala, A., and Fullana-i-Palmer, P. (2022). Life cycle assessment as a tool for

evaluating chemical processes at industrial scale: a review. Green Chemistry, 24(20),

-7762.

Fei, W., Opoku, A., Agyekum, K., Oppon, J. A., Ahmed, V., Chen, C., and Lok, K. L. (2021). The

critical role of the construction industry in achieving the sustainable development goals

(SDGs): Delivering projects for the common good. Sustainability, 13(16), 9112.

Fenton, O. S., Olafson, K. N., Pillai, P. S., Mitchell, M. J., and Langer, R. (2018). Advances in

biomaterials for drug delivery. Advanced Materials, 30(29), 1705328.

García-Quintero, A., and Palencia, M. (2021). A critical analysis of environmental sustainability

metrics applied to green synthesis of nanomaterials and the assessment of

environmental risks associated with the nanotechnology. Science of the Total

Environment, 793, 148524.

Gemil, K.W., Na’ila, D.S., Ardila, N.Z., and Sarahah, Z.U. (2024). The relationship of vocational

education skills in agribusiness processing agricultural products in achieving

sustainable development goals (SDGs). ASEAN Journal of Science and Engineering

Education, 4(2), 181-192.

Ghosh, S., Patil, S., Ahire, M., Kitture, R., Gurav, D. D., Jabgunde, A. M., and Chopade, B. A.

(2012). Gnidia glauca flower extract mediated synthesis of gold nanoparticles and

evaluation of its chemocatalytic potential. Journal of Nanobiotechnology, 10, 1-9.

Glovatskii, O., Kalimbetov, B., Ergashev, R., Kholbutaev, B., Pardaev, M., Ergasheva, G.,

Nasirova, N., and Khimmataliev, D.O. (2025). Modernization of Submersible Pump

Designs for Sustainable Irrigation: A Bibliometric and Experimental Contribution to

Sustainable Development Goals (SDGs). Indonesian Journal of Science and Technology,

(3), 427-438.

Guerra, F. D., Attia, M. F., Whitehead, D. C., and Alexis, F. (2018). Nanotechnology for

environmental remediation: materials and applications. Molecules, 23(7), 1760.

Guinée, J. B., de Koning, A., and Heijungs, R. (2022). Life cycle assessment‐based Absolute

Environmental Sustainability Assessment is also relative. Journal of Industrial

Ecology, 26(3), 673-682.

Gupta, A. K., and Gupta, M. (2005). Synthesis and surface engineering of iron oxide

nanoparticles for biomedical applications. biomaterials, 26(18), 3995-4021.

Gupta, D., Boora, A., Thakur, A., and Gupta, T. K. (2023). Green and sustainable synthesis of

nanomaterials: recent advancements and limitations. Environmental Research, 231,

Haq, M.R.I., Nurhaliza, D.V., Rahmat, L.N., and Ruchiat, R.N.A. (2024). The influence of

environmentally friendly packaging on consumer interest in implementing zero waste

in the food industry to meet sustainable development goals (SDGs) needs. ASEAN

Journal of Economic and Economic Education, 3(2), 111-116.

Harish, V., Ansari, M. M., Tewari, D., Gaur, M., Yadav, A. B., García-Betancourt, M. L., and

Barhoum, A. (2022). Nanoparticle and nanostructure synthesis and controlled growth

methods. Nanomaterials, 12(18), 3226.

Henny, H., Budi, A.H.S., Andriyansyah, M., Ar Rozzak, M.R., Baru, M.M., and Masek, A. (2025).

Hazard identification, risk assessment, and determining control (HIRADC) for

workplace safety in manufacturing industry: A risk-control framework complete with

bibliometric literature review analysis to support sustainable development goals

(SDGs). ASEAN Journal for Science and Engineering in Materials, 4(2), 267-284.

Huang, H., Feng, W., and Chen, Y. (2021). Two-dimensional biomaterials: material science,

biological effect and biomedical engineering applications. Chemical Society

Reviews, 50(20), 11381-11485.

Huang, L. J., Geng, L., and Peng, H. X. (2015). Microstructurally inhomogeneous composites:

is a homogeneous reinforcement distribution optimal?. Progress in Materials Science, 71,

-168.

Hussain, S., Akhter, R., and Maktedar, S. S. (2024). Advancements in sustainable food

packaging: from eco-friendly materials to innovative technologies. Sustainable Food

Technology, 2(5), 1297-1364.

Irfan, M., Munir, H., and Ismail, H. (2021). Moringa oleifera gum based silver and zinc oxide

nanoparticles: green synthesis, characterization and their antibacterial potential against

MRSA. Biomaterials Research, 25(1), 17.

Islam, S., Weerasinghe, H., Prado, D. M., Gonzaga, A. N., and Burda, C. (2025). Diversifying the

Materials and Technologies for the Future of Energy Storage. Energy and Fuels, 39(18),

-8390.

Jamkhande, P. G., Ghule, N. W., Bamer, A. H., and Kalaskar, M. G. (2019). Metal nanoparticles

synthesis: An overview on methods of preparation, advantages and disadvantages, and

applications. Journal of Drug Delivery Science and Technology, 53, 101174.

Jayachandran, A., Aswathy, T. R., and Nair, A. S. (2021). Green synthesis and characterization

of zinc oxide nanoparticles using Cayratia pedata leaf extract. Biochemistry and

Biophysics Reports, 26, 100995.

Jin, H., Xu, J., Liu, H., Shen, H., Yu, H., Jaroniec, M., and Qiao, S. Z. (2023). Emerging materials

and technologies for electrocatalytic seawater splitting. Science Advances, 9(42),

eadi7755.

Kaliraj, L., Ahn, J. C., Rupa, E. J., Abid, S., Lu, J., and Yang, D. C. (2019). Synthesis of panos

extract mediated ZnO nano-flowers as photocatalyst for industrial dye degradation by UV

illumination. Journal of Photochemistry and Photobiology B: Biology, 199, 111588.

Kalt, G., Thunshirn, P., Wiedenhofer, D., Krausmann, F., Haas, W., and Haberl, H. (2021).

Material stocks in global electricity infrastructures–An empirical analysis of the power

sector's stock-flow-service nexus. Resources, Conservation and Recycling, 173, 105723.

Kambale, E. K., Nkanga, C. I., Mutonkole, B. P. I., Bapolisi, A. M., Tassa, D. O., Liesse, J. M. I.,

and Memvanga, P. B. (2020). Green synthesis of antimicrobial silver nanoparticles using

aqueous leaf extracts from three Congolese plant species (Brillantaisia patula,

Crossopteryx febrifuga and Senna siamea). Heliyon, 6(8), e04493.

Kanan, S., Moyet, M. A., Arthur, R. B., and Patterson, H. H. (2020). Recent advances on TiO2-

based photocatalysts toward the degradation of pesticides and major organic pollutants

from water bodies. Catalysis Reviews, 62(1), 1-65.

Keisyafa, A., Sunarya, D.N., Aghniya, S.M., and Maula, S.P. (2024). Analysis of student’s

awareness of sustainable diet in reducing carbon footprint to support sustainable

development goals (SDGs) 2030. ASEAN Journal of Agricultural and Food Engineering,

(1), 67-74.

Kerans, G., Sanjaya, Y., Liliasari, L., Pamungkas, J., and Ate, G., Y. (2024). Effect of substrate

and water on cultivation of Sumba seaworm (nyale) and experimental practicum

design for improving critical and creative thinking skills of prospective science teacher

in biology and supporting sustainable development goals (SDGs). ASEAN Journal of

Science and Engineering, 4(3), 383-404.

Khalilov, R. (2023). A comprehensive review of advanced nano-biomaterials in regenerative

medicine and drug delivery. Advances in Biology and Earth Sciences, 8(1).

Khan, S. A., Shahid, S., and Lee, C. S. (2020). Green synthesis of gold and silver nanoparticles

using leaf extract of Clerodendrum inerme; characterization, antimicrobial, and

antioxidant activities. Biomolecules, 10(6), 835.

Khan, S. A., Shahid, S., Hanif, S., Almoallim, H. S., Alharbi, S. A., and Sellami, H. (2021). Green

synthesis of chromium oxide nanoparticles for antibacterial, antioxidant anticancer, and

biocompatibility activities. International Journal of Molecular Sciences, 22(2), 502.

Khani, R., Roostaei, B., Bagherzade, G., and Moudi, M. (2018). Green synthesis of copper

nanoparticles by fruit extract of Ziziphus spina-christi (L.) Willd.: Application for

adsorption of triphenylmethane dye and antibacterial assay. Journal of Molecular

Liquids, 255, 541-549.

Komnitsas, K. A. (2011). Potential of geopolymer technology towards green buildings and

sustainable cities. Procedia Engineering, 21, 1023-1032.

Krauklis, A. E., Karl, C. W., Gagani, A. I., and Jørgensen, J. K. (2021). Composite material

recycling technology—state-of-the-art and sustainable development for the

s. Journal of Composites Science, 5(1), 28.

Krishnan, A., Al-Obaidi, A.S.M., and Hao, L.C. (2024). Towards sustainable wind energy: A

systematic review of airfoil and blade technologies over the past 25 years for

supporting sustainable development goals (SDGs). Indonesian Journal of Science and

Technology, 9(3), 623-656.

Kumar, A., Kuang, Y., Liang, Z., and Sun, X. (2020). Microwave chemistry, recent

advancements, and eco-friendly microwave-assisted synthesis of nanoarchitectures and

their applications: a review. Materials Today Nano, 11, 100076.

Lemons, J. E., and Lucas, L. C. (1986). Properties of biomaterials. The Journal of

arthroplasty, 1(2), 143-147.

Lenzen, M., Geschke, A., West, J., Fry, J., Malik, A., Giljum, S., ... and Schandl, H. (2022).

Implementing the material footprint to measure progress towards Sustainable

Development Goals 8 and 12. Nature Sustainability, 5(2), 157-166.

Li, X., Qin, D., Hu, Y., Ahmad, W., Ahmad, A., Aslam, F., and Joyklad, P. (2022). A systematic

review of waste materials in cement-based composites for construction

applications. Journal of Building Engineering, 45, 103447.

Li, Y., Shen, J., Lin, H., and Li, Y. (2023). Optimization design for alkali-activated slag-fly ash

geopolymer concrete based on artificial intelligence considering compressive strength,

cost, and carbon emission. Journal of Building Engineering, 75, 106929.

Lombardo, D., Calandra, P., Pasqua, L., and Magazù, S. (2020). Self-assembly of organic

nanomaterials and biomaterials: The bottom-up approach for functional nanostructures

formation and advanced applications. Materials, 13(5), 1048.

Madan, H. R., Sharma, S. C., Suresh, D., Vidya, Y. S., Nagabhushana, H., Rajanaik, H., and

Maiya, P. S. (2016). Facile green fabrication of nanostructure ZnO plates, bullets, flower,

prismatic tip, closed pine cone: their antibacterial, antioxidant, photoluminescent and

photocatalytic properties. Spectrochimica Acta Part A: Molecular and Biomolecular

Spectroscopy, 152, 404-416.

Mahmood, S., Sun, H., Iqbal, A., Alhussan, A. A., and El-kenawy, E. S. M. (2024). Green finance,

sustainable infrastructure, and green technology innovation: pathways to achieving

sustainable development goals in the belt and road initiative. Environmental Research

Communications, 6(10), 105036.

Makinde, S.O., Ajani, Y.A., and Abdulrahman, M.R. (2024). Smart learning as transformative

impact of technology: A paradigm for accomplishing sustainable development goals

(SDGs) in education. Indonesian Journal of Educational Research and Technology, 4(3),

-224.

Martins, R. (2021). Materials as activator of future global science and technology

challenges. Progress in Natural Science: Materials International, 31(6), 785-791.

Maryanti, R., Rahayu, N., Muktiarni, M., Al Husaeni, D. F., Hufad, A., Sunardi, S., & Nandiyanto,

A. B. D. (2022). Sustainable development goals (SDGs) in science education: Definition,

literature review, and bibliometric analysis. Journal of Engineering Science and

Technology, 17, 161-181.

Mathevet, R., Bousquet, F., and Raymond, C. M. (2018). The concept of stewardship in

sustainability science and conservation biology. Biological conservation, 217, 363-370.

Matlin, S. A., Cornell, S. E., Kümmerer, K., Mahaffy, P. G., and Mehta, G. (2025). Inventing a

secure future: material stewardship as chemistry's mission for sustainability. RSC

Sustainability, 3(2), 804-821.

Matlin, S. A., Mehta, G., Cornell, S. E., Krief, A., and Hopf, H. (2023). Chemistry and pathways

to net zero for sustainability. RSC Sustainability, 1(7), 1704-1721.

Maulana, I., Asran, M.A., and Ash-Habi, R.M. (2023). Implementation of sustainable

development goals (SDGs) no. 12: Responsible production and consumption by

optimizing lemon commodities and community empowerment to reduce household

waste. ASEAN Journal of Community Service and Education, 2(2), 141-146.

Mazitova, A. K., Zaripov, I. I., Aminova, G. K., Ovod, M. V., and Suntsova, N. L. (2022). Fillers

for polymer composite materials. Nanotekhnologii v Stroitel'stve, 14(4), 294-299.

Merzouki, M., Khibech, O., Fraj, E., Bouammali, H., Bourhou, C., Hammouti, B., Bouammali,

B., and Challioui, A. (2025). Computational engineering of malonate and tetrazole

derivatives targeting SARS-CoV-2 main protease: Pharmacokinetics, docking, and

molecular dynamics insights to support the sustainable development goals (SDGs),

with a bibliometric analysis. Indonesian Journal of Science and Technology, 10(2), 399-

Mishra, B., Mohanta, Y. K., Reddy, C. N., Reddy, S. D. M., Mandal, S. K., Yadavalli, R., and

Sarma, H. (2023). Valorization of agro-industrial biowaste to biomaterials: An innovative

circular bioeconomy approach. Circular Economy, 2(3), 100050.

Mohanty, A. K., Vivekanandhan, S., Pin, J. M., and Misra, M. (2018). Composites from

renewable and sustainable resources: Challenges and innovations. Science, 362(6414),

-542.

Mondal, P., Anweshan, A., and Purkait, M. K. (2020). Green synthesis and environmental

application of iron-based nanomaterials and nanocomposite: A

review. Chemosphere, 259, 127509.

Moradeeya, P. G., Sharma, A., Kumar, M. A., and Basha, S. (2022). Titanium dioxide based

nanocomposites–current trends and emerging strategies for the photocatalytic

degradation of ruinous environmental pollutants. Environmental Research, 204, 112384.

Namoussa, T.Y., Boucerredj,L., Khechekhouche, A., Kemerchou, I., Zair, N., Jahangiri, M.,

Miloudi, A., and Siqueira, A. (2025). Innovative nanofluid encapsulation in solar stills:

Boosting water yield and efficiency under extreme climate supporting sustainable

development goals (SDGs). Indonesian Journal of Science and Technology, 10(3), 419-

Nasrollahzadeh, M., Sajjadi, M., Iravani, S., and Varma, R. S. (2021). Green-synthesized

nanocatalysts and nanomaterials for water treatment: Current challenges and future

perspectives. Journal of Hazardous Materials, 401, 123401.

Nilimaa, J. (2023). Smart materials and technologies for sustainable concrete

construction. Developments in the Built Environment, 15, 100177.

Nurnabila, A.T., Basnur, J., Rismayani, R., Ramadhani, S., and Zulhilmi, Z. (2023). Analysis of

the application of mediterranean diet patterns on sustainability to support the

achievement of sustainable development goals (SDGs): Zero hunger, good health and

well beings, responsible consumption, and production. ASEAN Journal of Agricultural

and Food Engineering, 2(2), 105-112.

Nurramadhani, A., Riandi, R., Permanasari, A., and Suwarma, I.R. (2024). Low-carbon food

consumption for solving climate change mitigation: Literature review with

bibliometric and simple calculation application for cultivating sustainability

consciousness in facing sustainable development goals (SDGs). Indonesian Journal of

Science and Technology, 9(2), 261-286.

Obruca, S., Benesova, P., Marsalek, L., and Marova, I. (2015). Use of lignocellulosic materials

for PHA production. Chemical and Biochemical Engineering Quarterly, 29(2), 135-144.

Oves, M., Rauf, M. A., Aslam, M., Qari, H. A., Sonbol, H., Ahmad, I., and Saeed, M. (2022).

Green synthesis of silver nanoparticles by Conocarpus Lancifolius plant extract and their

antimicrobial and anticancer activities. Saudi Journal of Biological Sciences, 29(1), 460-

Pallas, G., Vijver, M. G., Peijnenburg, W. J., and Guinée, J. (2020). Ex ante life cycle assessment

of GaAs/Si nanowire–based tandem solar cells: A benchmark for industrialization. The

International Journal of Life Cycle Assessment, 25, 1767-1782.

Patel, A., and Taufik, M. (2022). Advances in nanocomposite material for fused filament

fabrication. Polymer-Plastics Technology and Materials, 61(15), 1617-1661.

Patra, J. K., and Baek, K. H. (2015). Novel green synthesis of gold nanoparticles using Citrullus

lanatus rind and investigation of proteasome inhibitory activity, antibacterial, and

antioxidant potential. International Journal of Nanomedicine, 7253-7264.

Peng, S., Jin, G., Li, L., Li, K., Srinivasan, M., Ramakrishna, S., and Chen, J. (2016). Multifunctional electrospun nanofibres for advances in tissue regeneration, energy conversion

and storage, and water treatment. Chemical Society Reviews, 45(5), 1225-1241.

Perez, R. A., Won, J. E., Knowles, J. C., and Kim, H. W. (2013). Naturally and synthetic smart

composite biomaterials for tissue regeneration. Advanced Drug Delivery Reviews, 65(4),

-496.

Pillai, C. K. S. (2010). Challenges for natural monomers and polymers: novel design strategies

and engineering to develop advanced polymers. Designed Monomers and

Polymers, 13(2), 87-121.

Priyadarshini, B., and Vijayalakshmi, U. (2018). Development of cerium and silicon co-doped

hydroxyapatite nanopowder and its in vitro biological studies for bone regeneration

applications. Advanced Powder Technology, 29(11), 2792-2803.

Priyadarshini, B., Anjaneyulu, U., and Vijayalakshmi, U. (2017). Preparation and

characterization of sol-gel derived Ce 4+ doped hydroxyapatite and its in vitro biological

evaluations for orthopedic applications. Materials and Design, 119, 446-455.

Priyadarshini, B., Stango, A. X., Balasubramanian, M., and Vijayalakshmi, U. (2023). In situ

fabrication of cerium-incorporated hydroxyapatite/magnetite nanocomposite coatings

with bone regeneration and osteosarcoma potential. Nanoscale Advances, 5(18), 5054-

Qamar, H., Rehman, S., Chauhan, D. K., Tiwari, A. K., and Upmanyu, V. (2020). Green synthesis,

characterization and antimicrobial activity of copper oxide nanomaterial derived from

Momordica charantia. International Journal of Nanomedicine, 2541-2553.

Raabe, D. (2023). The materials science behind sustainable metals and alloys. Chemical

Reviews, 123(5), 2436-2608.

Raak, N., Symmank, C., Zahn, S., Aschemann-Witzel, J., and Rohm, H. (2017). Processing-and

product-related causes for food waste and implications for the food supply chain. Waste

Management, 61, 461-472.

Ragadhita, R., Fiandini, M., Al Husaeni, D.N., and Nandiyanto, A.B.D. (2026). Sustainable

development goals (SDGs) in engineering education: Definitions, research trends,

bibliometric insights, and strategic approaches. Indonesian Journal of Science and

Technology, 11(1), 1-26.

Rahmah, F.A., Nurlaela, N., Anugrah, R., and Putri, Y.A.R. (2024). Safe food treatment

technology: The key to realizing the sustainable development goals (SDGs) zero

hunger and optimal health. ASEAN Journal of Agricultural and Food Engineering, 3(1),

-66.

Rahmat, A., Zahrani, A., Hidayat, H., Arum, F., Respati, S.A., Susanti, W.D., Hariadi, H., Mutolib,

A. (2025). Characteristics of jengkol peel (Pithecellobium jiringa) biochar produced at

various pyrolysis temperatures for enhanced agricultural waste management and

supporting sustainable development goals (SDGs). ASEAN Journal of Science and

Engineering, 5(1), 145-172.

Rajak, D. K., Pagar, D. D., Menezes, P. L., and Linul, E. (2019). Fiber-reinforced polymer

composites: Manufacturing, properties, and applications. Polymers, 11(10), 1667.

Ramakrishnan, T., Mohan Gift, M. D., Chitradevi, S., Jegan, R., Hency Jose, P. S., Nagaraja, H.

N., and Hailegiorgis, S. M. (2022). Study of numerous resins used in polymer matrix

composite materials. Advances in Materials Science and Engineering, 2022(1), 1088926.

Ravindran, R., and Jaiswal, A. K. (2016). Exploitation of food industry waste for high-value

products. Trends in Biotechnology, 34(1), 58-69.

Rebouillat, S., and Pla, F. (2016). Recent strategies for the development of biosourcedmonomers, oligomers and polymers-based materials: A review with an innovation and a

bigger data focus. Journal of Biomaterials and Nanobiotechnology, 7(04), 167.

Reuter, M. A., van Schaik, A., Gutzmer, J., Bartie, N., and Abadías-Llamas, A. (2019). Challenges

of the circular economy: a material, metallurgical, and product design

perspective. Annual Review of Materials Research, 49(1), 253-274.

Rochman, S., Rustaman, N., Ramalis, T.R., Amri, K., Zukmadini, A.Y., Ismail, I., and Putra, A.H.

(2024). How bibliometric analysis using VOSviewer based on artificial intelligence data

(using ResearchRabbit Data): Explore research trends in hydrology content. ASEAN

Journal of Science and Engineering, 4(2), 251-294.

Safari, J., and Javadian, L. (2015). Ultrasound assisted the green synthesis of 2-amino-4Hchromene derivatives catalyzed by Fe3O4-functionalized nanoparticles with chitosan as

a novel and reusable magnetic catalyst. Ultrasonics Sonochemistry, 22, 341-348.

Sandanayake, M., Gunasekara, C., Law, D., Zhang, G., and Setunge, S. (2018). Greenhouse gas

emissions of different fly ash based geopolymer concretes in building

construction. Journal of Cleaner Production, 204, 399-408.

Santhosh, C., Velmurugan, V., Jacob, G., Jeong, S. K., Grace, A. N., and Bhatnagar, A. (2016).

Role of nanomaterials in water treatment applications: a review. Chemical Engineering

Journal, 306, 1116-1137.

Sesrita, A., Adri, H.T., Suherman, I., Rasmitadila, R., and Fanani, M.Z. (2025). Production of

wet organic waste ecoenzymes as an alternative solution for environmental

conservation supporting sustainable development goals (SDGs): A techno-economic

and bibliometric analysis. ASEAN Journal for Science and Engineering in Materials,

(2), 245-266.

Sharma, A. K., Bhandari, R., Aherwar, A., and Rimašauskienė, R. (2020). Matrix materials used

in composites: A comprehensive study. Materials Today: Proceedings, 21, 1559-1562.

Soegoto, H.S., Pohan, M.A.R., Luckyardi, S., Supatmi, S., Amasawa, E., Phithakkitnukoon, S.,

and Hasibuan, Z.A. (2025). Contributing factors to greenhouse gas emissions in

agriculture for supporting sustainable development goals (SDGs): Insights from a

systematic literature review completed by computational bibliometric

analysis. ASEAN Journal of Science and Engineering, 5(2), 199-230

Stamatakis, G. (2010). Energy and geo-environmental applications for olive mill wastes. a

review. Hellenic Journal of Geosciences, 45(1), 269-282.

Syahrudin, D., Roestamy, M., Fauziah, R.S.P., Rahmawati, R., Pratidina, G., Purnamasari, I.,

Muhtar, S., and Salbiah, E. (2026). Techno-economic analysis of production ecobrick

from plastic waste to support sustainable development goals (SDGs). ASEAN Journal

for Science and Engineering in Materials, 5(1), 9-16.

Thamaraiselvi, T., and Rajeswari, S. (2004). Biological evaluation of bioceramic materials-a

review. Carbon, 24(31), 172.

Thoniyot, P., Tan, M. J., Karim, A. A., Young, D. J., and Loh, X. J. (2015). Nanoparticle–hydrogel

composites: Concept, design, and applications of these promising, multi‐functional

materials. Advanced Science, 2(1-2), 1400010.

Thovhogi, N., Park, E., Manikandan, E., Maaza, M., and Gurib-Fakim, A. (2016). Physical

properties of CdO nanoparticles synthesized by green chemistry via Hibiscus Sabdariffa

flower extract. Journal of Alloys and Compounds, 655, 314-320.

Tiwari, A. (2023). Advancement of materials to sustainable and green world. Sustainable

Development, 2018, 2028.

Van Thuan, D., Ngo, H. L., Thi, H. P., and Chu, T. T. H. (2023). Photodegradation of hazardous

organic pollutants using titanium oxides-based photocatalytic: A review. Environmental

Research, 229, 116000.

Villaseñor, M. J., and Ríos, Á. (2018). Nanomaterials for water cleaning and desalination,

energy production, disinfection, agriculture and green chemistry. Environmental

Chemistry Letters, 16, 11-34.

Waardhani, A.W., Noviyanti, A.R., Kusrini, E., Nugrahaningtyas, K.D., Prasetyo, A.B., Usman,

A., Irwansyah, F.S., and Juliandri, J. (2025). A study on sustainable eggshell-derived

hydroxyapatite/CMC membranes: Enhancing flexibility and thermal stability for

sustainable development goals (SDGs). Indonesian Journal of Science and Technology,

(2), 191-206.

Whalen, J. M., Matlin, S. A., Holme, T. A., Stewart, J. J., and Mahaffy, P. G. (2022). A systems

approach to chemistry is required to achieve sustainable transformation of matter: The

case of ammonia and reactive nitrogen. ACS Sustainable Chemistry and

Engineering, 10(39), 12933-12947.

Wu, W., He, Q., and Jiang, C. (2008). Magnetic iron oxide nanoparticles: synthesis and surface

functionalization strategies. Nanoscale Research Letters, 3, 397-415.

Wu, W., Xiao, X. H., Ren, F., Zhang, S. F., and Jiang, C. Z. (2012). A comparative study of the

magnetic behavior of single and tubular clustered magnetite nanoparticles. Journal of

Low Temperature Physics, 168, 306-313.

Yadav, N., and Singh, S. (2021). Polyoxometalate-mediated vacancy-engineered cerium oxide

nanoparticles exhibiting controlled biological enzyme-mimicking activities. Inorganic

Chemistry, 60(10), 7475-7489.

Yang, X., Lee, S. J., Yoo, H. Y., Choi, H. S., Park, C., and Kim, S. W. (2014). Biorefinery of instant

noodle waste to biofuels. Bioresource Technology, 159, 17-23.

Yeo, J. C. C., Muiruri, J. K., Fei, X., Wang, T., Zhang, X., Xiao, Y., ... and Li, Z. (2024). Innovative

biomaterials for food packaging: Unlocking the potential of polyhydroxyalkanoate (PHA)

biopolymers. Biomaterials Advances, 163, 213929.

Yusefi, M., Shameli, K., Su Yee, O., Teow, S. Y., Hedayatnasab, Z., Jahangirian, H., and Kuča, K.

(2021). Green synthesis of Fe3O4 nanoparticles stabilized by a Garcinia mangostana fruit

peel extract for hyperthermia and anticancer activities. International Journal of

Nanomedicine, 2515-2532.

Yustiarini, D., Soemardi, B.W., and Pribadi, K.S. (2025). Integrating multi-stakeholder

governance, engineering approaches, and bibliometric literature review insights for

sustainable regional road maintenance: Contribution to sustainable development

goals (SDGs) 9, 11, and 16. Indonesian Journal of Science and Technology, 10(2), 367-

Zaman, H. A., Sharif, S., Idris, M. H., and Kamarudin, A. (2015). Metallic biomaterials for

medical implant applications: a review. Applied Mechanics and Materials, 735, 19-25.

Zargar, M., Hamid, A. A., Bakar, F. A., Shamsudin, M. N., Shameli, K., Jahanshiri, F., and

Farahani, F. (2011). Green synthesis and antibacterial effect of silver nanoparticles using

Vitex negundo L. Molecules, 16(8), 6667-6676.

Zeng, M., Chen, M., Huang, D., Lei, S., Zhang, X., Wang, L., and Cheng, Z. (2021). Engineered

two-dimensional nanomaterials: an emerging paradigm for water purification and

monitoring. Materials Horizons, 8(3), 758-802.

Downloads

Published

2026-03-01