Mohammad Mansoob Khan
| Mohammad Mansoob Khan | |
|---|---|
| Born | Mohammad Mansoob Khan 12 July 1973 India |
| 🏳️ Nationality | Indian |
| 🎓 Alma mater | Aligarh Muslim University (BSc, MSc, PhD) |
| 💼 Occupation | |
| Known for | Green and phytogenic synthesis of nanomaterials Band gap engineering of semiconductor metal oxides and chalcogenides Visible-light-driven photocatalysis Electrochemically active biofilm-mediated nanoparticle synthesis Inorganic nanohybrid materials |
| 🏅 Awards | Top 2% Scientists (Stanford/Elsevier), 2021–2025 Best Senior Researcher Award, UBD (2019) Top 1% Reviewer, Publons (2017, 2018, 2019) Best Paper Awards (BICET 2016, Yeungnam 2018) |
| 🌐 Website | ubd |
Mohammad Mansoob Khan (born 12 July 1973) is an Indian chemist and academic who is Professor of Inorganic Chemistry and Nanotechnology in the Chemical Sciences programme of the Faculty of Science at Universiti Brunei Darussalam (UBD) in Brunei.[1][2] He is known for his research on the green and phytogenic synthesis of nanoparticles, the band gap engineering of semiconductor metal oxides and chalcogenides, the use of electrochemically active biofilms as a reducing tool for nanoparticle synthesis, and the development of inorganic nanohybrid materials for applications in photocatalysis, hydrogen production, photoelectrodes, sensors, solar cells, and biomedical applications.[3][4]
Khan trained at Aligarh Muslim University in India, where he completed his BSc, MSc and PhD in chemistry between 1997 and 2002. Before joining Universiti Brunei Darussalam in 2015, he held academic positions in India, Ethiopia, Oman, and South Korea, including a research professorship at Yeungnam University (2011–2015), where he developed methods for the biogenic synthesis of metal and metal-oxide nanostructures using electrochemically active biofilms.[1][4] He was promoted to Associate Professor at UBD in 2019 and to full Professor in 2023.[1]
Khan has been named in the Stanford University–Elsevier global ranking of the world's top 2% of scientists in every annual release from 2021 to 2025, in both career-long and single-year impact categories.[5][6] The AD Scientific Index has ranked him as the top scientist at UBD in the Natural Sciences/Chemical Sciences subject field.[7] According to Google Scholar, he has authored over 250 publications, with more than 18,500 citations, an h-index of 69, and an i10-index of 164.[2][8]
Early life and education
Khan was born on 12 July 1973 in India.[1] He completed his entire university education at Aligarh Muslim University in Aligarh, Uttar Pradesh, obtaining a BSc (Honours) in Chemistry in 1997, an MSc in Chemistry in 1999, and a PhD in Chemistry in 2002.[9][10]
His doctoral work focused on the synthesis, structural characterisation, and physico-chemical behaviour of large dinucleating macrocyclic ligands and their transition-metal complexes — including 18-, 20- and 32-membered tetraaza, octaaza and dodecaaza macrocyclic systems with amide, imine and amine donor functions — and their reactions with Group-12 (Zn, Cd, Hg) and platinum-group metal salts.[11] The results of this PhD research formed the basis of his first authored book, Chemistry of Dinucleating Macrocyclic Ligand and their Complexes (2012).[11]
Career
Early academic positions in India, Ethiopia and Oman (2003–2010)
Khan began his academic career in September 2003 as a lecturer at Gandhi-Faiz-e-Aam P.G. College in Shahjahanpur, India, followed by a short appointment at the Noida Institute of Engineering and Technology in Greater Noida in mid-2004.[9] Later in 2004 he moved to Ethiopia as an Assistant Professor of Chemistry at the University of Gondar, where he remained until October 2007.[4]
In November 2007, Khan joined the Higher College of Technology in Muscat, Oman, as a lecturer in chemistry, a position he held until July 2010.[4] After a brief visiting appointment at Hamdard University in New Delhi (August–October 2010), he returned to Ethiopia as Associate Professor at Dilla University between November 2010 and June 2011.[9]
Yeungnam University (2011–2015)
In September 2011, Khan joined Yeungnam University in Gyeongsan, South Korea, as a Research Professor in the School of Chemical Engineering.[4] Working closely with Moo Hwan Cho, Khan's research at Yeungnam centred on the use of electrochemically active biofilms (EABs) as a sustainable, biotic reducing system for the synthesis of metal and metal-oxide nanostructures.[10][2] Within this framework he and his collaborators reported biogenic preparations of gold, silver, palladium and platinum nanoparticles, as well as graphene and reduced graphene oxide–based nanocomposites, and explored their photocatalytic, photoelectrochemical and biohydrogen-generation properties.[2]
The methods developed during this period gave rise to four Korean patents covering biofilm-mediated routes to nanoparticles, band-gap-engineered semiconductor metal oxides, and visible-light-active metal/metal-oxide nanocomposites.[12]
Universiti Brunei Darussalam (2015–present)
Khan joined Universiti Brunei Darussalam in April 2015 as a Senior Assistant Professor in the Department of Chemical Sciences, Faculty of Science. He was promoted to Associate Professor in August 2019 and to full Professor of Inorganic Chemistry and Nanotechnology in June 2023.[1][13]
At UBD, Khan has held several academic and administrative positions. He served briefly as Acting Deputy Dean (Academics) and Acting Deputy Dean (Research) of the Faculty of Science in late 2018, and as Programme Leader of Chemical Sciences in 2017–2018, with multiple subsequent appointments as Acting Programme Leader.[1] Since 2015 he has been the Programme Coordinator for the online graduate admissions system of the Department of Chemical Sciences. He chairs the Faculty Global Affairs Committee (since 2021), sits on the Faculty Research Committee (since 2019), and was appointed to the Faculty Promotion and Migration Committee for the 2025–2027 term.[1]
Khan is also a member of the Optoelectronic Device Research Group (since 2020) and the Marine Ecosystem and Climate Change group at UBD (since 2021).[12]
Research
Khan's research lies at the intersection of nanochemistry, materials chemistry and nanotechnology, and is unified by the synthesis of inorganic nanomaterials with controlled structure, morphology and electronic properties for applications in energy and environmental science.[3][1]
Green and phytogenic synthesis of nanomaterials
A central theme of Khan's work is the development of "green" and phytogenic (plant-mediated) synthesis routes for nanoparticles, using aqueous extracts of plants as both reducing and stabilising agents in place of conventional chemical reductants.[12] His group has reported plant-mediated preparations of ZnO, SnO2, CeO2, CeO2@SnO2 and related nanostructures using aqueous leaf extracts of Tradescantia spathacea, Pometia pinnata, Melastoma malabathricum, Ziziphus mauritiana and Costus woodsonii, and has explored their use in photocatalysis, antioxidant assays, antibacterial studies and anti-biofilm activity.[14][15]
A related strand of work investigates the use of electrochemically active biofilms (EABs) as a biotic reducing tool for the synthesis of metal and metal-oxide nanostructures and the production of biohydrogen catalysed by positively charged gold nanoparticles.[12]
Band gap engineering of semiconductor nanostructures
Khan's group has carried out extensive work on the band gap engineering of wide-band-gap semiconductors — particularly TiO2, ZnO, SnO2, CeO2 and BiOCl — through doping, surface modification, defect engineering and heterostructuring, with the aim of activating these materials under visible light for photocatalytic dye degradation, pollutant removal and photoelectrochemical applications.[16] Representative work has examined Ag-decorated SnO2, Ag/CeO2/ZnO, and ZnO/Ag/Mn2O3 nanocomposites for visible-light photocatalysis and electrochemical sensing of biomolecules such as uric acid and ascorbic acid.[17]
Chalcogenide photocatalysts
Khan has worked extensively on metal chalcogenide nanomaterials — sulfides, selenides and tellurides — as photocatalysts for solar-driven hydrogen production and environmental remediation.[18] His group has reported syntheses and applications of MoS2, CdS, ZnS, SnS2, CuInS2, Cu2ZnSnS4 ("CZTS"), and various doped or heterostructured chalcogenides such as CdS@CuInS2 and CdS@Cu0.5Mg2.5SnS4 for the photocatalytic degradation of dyes such as brilliant green and methylene blue.[19] His 2021 edited book Chalcogenide-Based Nanomaterials as Photocatalysts is part of Elsevier's nanomaterials reference series.[18]
Perovskites and MXenes
More recent work in Khan's group has extended to perovskite oxides (notably LaCoO3, LaMnO3, LaFeO3 and Ni-doped LaCo1−xNixO3) for electrocatalytic oxygen reduction reactions and methanol-tolerant fuel-cell catalysts, and to MXenes and MXene-based heterostructures for various photocatalytic applications.[20][21]
Antimicrobial, antioxidant and biomedical applications
Khan's group has investigated visible-light-induced antibacterial, antibiofilm, and antioxidant activities of phytogenically synthesised ZnO, SnO2, CeO2 and their doped or co-doped variants, as well as ZnO-based antimicrobial coatings for biomedical use.[22] The group has also explored chalcogenide-based nanomaterials for wound healing, antimicrobial photocatalysis and anti-fibrillatory activity, and contributed reviews on nanomedicine, sunscreens, and nanopesticide toxicology.[23]
In Brunei, his work has extended to local environmental applications, including studies on microplastic accumulation in oysters along the Bornean coastline and the assessment of nitrate, nitrite and chloride exposure from cured meats in Bruneian schoolchildren.[24][25]
Patents
Khan is a co-inventor on four Korean patents arising from his research on the biogenic synthesis of nanomaterials at Yeungnam University:
- Synthesis method of gold nanoparticles — Korean Patent No. 1013364760000 (filed 2011, granted 2013).[12]
- Semiconductor metal oxide nanostructure with engineered band gap by electrochemically active biofilm and method for preparing the same — Korean Patent Application No. 10-2013-0060957.[12]
- Method for degrading dye using visible light sensitive metal/metal oxide nanocomposite prepared by electrochemically active biofilm under visible light irradiation — Korean Patent Application No. 10-2013-0132216.[12]
- Bio-hydrogen by electrochemically active biofilm and gold nanoparticles, and method for preparing the same — Korean Patent Application No. 10-2013-0147536.[12]
Teaching and graduate supervision
At UBD, Khan teaches modules in general, inorganic, organometallic, coordination and nano-chemistry, including a fourth-year undergraduate optional module on Semiconductors as Photocatalysts (SC-4311), which he developed in 2015.[1] Since joining UBD he has supervised seven Master of Science by Research students and three Doctor of Philosophy students through to completion, with further doctoral candidates ongoing.[1] He has also served as an external PhD thesis examiner for institutions including Aligarh Muslim University, Birla Institute of Technology, Rhodes University in South Africa, and Yeungnam University.[1]
International collaborations
Khan has actively maintained an international research network throughout his career. At various points he has collaborated with research groups in approximately fifteen countries, including South Korea (Pukyong National University, Chungnam National University and Yeungnam University), Japan (University of Yamanashi), the United Kingdom (University of Huddersfield), Saudi Arabia (King Fahd University of Petroleum and Minerals), Malaysia (Universiti Sains Malaysia and Universiti Malaya), India (the Indian Institutes of Technology at Kharagpur and Bombay), Turkey (Munzur University and Bursa Uludağ University), Indonesia (the Indonesian Institute of Sciences/BRIN and Universitas Muhammadiyah Purwokerto), and Algeria (University of Ghardaïa).[1][4]
Beyond his own group, Khan has served as an international project reviewer and research grant assessor for the King Fahd University of Petroleum and Minerals, King Saud University and the University of Cyprus.[1]
Editorial work
Khan has served as Associate Editor or Editorial Board Member of several international peer-reviewed journals, including the Journal of Saudi Chemical Society (Springer), the Journal of Umm Al-Qura University for Applied Sciences (Springer), Bioprocess and Biosystems Engineering (Springer), Discover Nano (Springer), Discover Electrochemistry (Springer), the Inorganic Chemistry section of Frontiers in Chemistry, and UBD's own Scientia Bruneiana (as Associate Editor, 2019–2024).[26][27]
He has guest-edited topical special issues for Journal of Saudi Chemical Society (Elsevier, 2015), Journal of Nanomaterials (Hindawi, 2017–2018), Applied Nanoscience (Springer, 2021), Frontiers in Chemistry (Frontiers, 2022–2023), Bioprocess and Biosystems Engineering (Springer, 2023–2024), and ChemistrySelect and ChemistryOpen (Wiley, 2023–2024), covering themes such as multi-anion photocatalysts, the role of plants in nanomaterial fabrication, and photoelectrocatalysis from research to applications.[12]
Khan has been recognised for his work as a peer reviewer with the Publons Top 1% Reviewer Award in 2017, 2018 and 2019.[13]
Awards and honours
2016 — Best Paper Award, 6th Brunei International Conference on Engineering and Technology (BICET 2016).[1]
2017 — Best Poster Award, 3rd Clean Energy Priority Research Center Workshop, Yeungnam University, South Korea.[1]
2017, 2018, 2019 — Top 1% Reviewer Award, Publons, for peer review in multidisciplinary fields.[13]
2018 — Best Paper Award, 17th Symposium on Clean Technology, Yeungnam University, South Korea.[1]
2019 — Best Senior Researcher Award, Universiti Brunei Darussalam.[1]
2021–2025 — Listed among the Stanford University/Elsevier world's top 2% of scientists (career-long and single-year impact), compiled by John Ioannidis et al.[5][6]
2021–2025 — Ranked among the top researchers at UBD in Chemical Sciences by the AD Scientific Index World Scientist and University Rankings.[7]
== Professional memberships == Khan is a member or life member of a number of national and international scholarly societies, including the American Chemical Society, the Korean Chemical Society, the Federation of Asian Chemical Societies, the Council of Asian Science Editors, the Indian Science Congress Association, the Indian Society of Chemists and Biologists, the Chemical Research Society of India, the Indian Chemical Society, and the Brunei Darussalam Institute of Chemistry.[1][4]
Books
Authored
Chemistry of Dinucleating Macrocyclic Ligand and their Complexes (LAP Lambert Academic Publishing, 2012). ISBN 978-3-659-14253-6 Search this book on
..[11]
Theoretical Concepts of Photocatalysis (Elsevier, 2023). ISBN 978-0-323-95191-3 Search this book on
.. doi:10.1016/C2021-0-01798-3.[8]
Photocatalysts: Synthesis and Characterization Methods (Elsevier, 2025). ISBN 978-0-443-28913-2 Search this book on
.. doi:10.1016/C2023-0-50790-6.[28]
Edited
Nanocomposites for Visible Light-Induced Photocatalysis (with D. Pradhan and Y. Sohn, Springer, 2017). ISBN 978-3-319-62445-7 Search this book on
.. doi:10.1007/978-3-319-62446-4.[29]
Polymer-Based Nanocomposites for Energy and Environmental Applications (with M. Jawaid, Elsevier, 2018). ISBN 978-0-08-101910-8 Search this book on
..[30]
Chalcogenide-Based Nanomaterials as Photocatalysts (Elsevier, 2021). ISBN 978-0-12-820498-6 Search this book on
..[18]
Selected publications
- Khan, M. M.; Adil, S. F.; Al-Mayouf, A. A. (2015). "Metal oxides as photocatalysts". Journal of Saudi Chemical Society. 19 (5): 462–464. doi:10.1016/j.jscs.2015.04.003.
- Saravanan, R.; Khan, M. M.; Gracia, F.; Qin, J.; Gupta, V. K.; Stephen, A. (2016). "Ce3+-ion-induced visible-light photocatalytic degradation and electrochemical activity of ZnO/CeO2 nanocomposite". Scientific Reports. 6: 31641. doi:10.1038/srep31641.
- Khan, M. E.; Khan, M. M.; Min, B. K.; Cho, M. H. (2018). "Microbial fuel cell assisted band gap narrowed TiO2 for visible light induced photocatalytic activities and power generation". Scientific Reports. 8: 1723. doi:10.1038/s41598-018-19953-3.
- Khan, M. E.; Khan, M. M.; Cho, M. H. (2018). "Recent progress of metal–graphene nanostructures in photocatalysis". Nanoscale. 10 (20): 9427–9440. doi:10.1039/C8NR03500H.
- Khan, M. M.; Saadah, N. H.; Khan, M. E.; Harunsani, M. H.; Tan, A. L.; Cho, M. H. (2019). "Phytogenic synthesis of band gap-narrowed ZnO nanoparticles using the bulb extract of Costus woodsonii". BioNanoScience. 9 (2): 334–344. doi:10.1007/s12668-019-00616-0.
- Matussin, S.; Harunsani, M. H.; Tan, A. L.; Khan, M. M. (2020). "Plant-Extract-Mediated SnO2 Nanoparticles: Synthesis and Applications". ACS Sustainable Chemistry & Engineering. 8 (8): 3040–3054. doi:10.1021/acssuschemeng.9b06398.
- Naidi, S. N.; Khan, F.; Tan, A. L.; Harunsani, M. H.; Kim, Y. B.; Khan, M. M. (2021). "Green-synthesized CeO2 nanoparticles for photocatalytic, antimicrobial, antioxidant and cytotoxicity activities". Journal of Materials Chemistry B. 9 (28): 5599–5620. doi:10.1039/D1TB00248A.
- Rahman, A.; Harunsani, M. H.; Tan, A. L.; Khan, M. M. (2021). "Zinc oxide and zinc oxide-based nanostructures: Biogenic and phytogenic synthesis, properties and applications". Bioprocess and Biosystems Engineering. 44: 1333–1372. doi:10.1007/s00449-021-02530-w.
- Rahman, A.; James, R. J.; Tan, A. L.; Khan, M. M. (2022). "Molybdenum disulfide-based nanomaterials for visible-light-induced photocatalysis". ACS Omega. 7 (26): 22089–22110. doi:10.1021/acsomega.2c01314.
- Khan, M. M.; Matussin, S. N.; Rahman, A. (2022). "Recent Progress of Phytogenic Synthesis of ZnO, SnO2 and CeO2 Nanomaterials". Bioprocess and Biosystems Engineering. 45: 619–645. doi:10.1007/s00449-022-02713-z.
- Khan, M. M.; Matussin, S. N.; Rahman, A. (2023). "Recent development of metal oxides and chalcogenides as antimicrobial agents". Bioprocess and Biosystems Engineering. 46: 1231–1249. doi:10.1007/s00449-023-02878-1.
- Parwaiz, S.; Sohn, Y.; Khan, M. M. (2025). "Insights into MXenes and MXene-based heterostructures for various photocatalytic applications". Materials Science in Semiconductor Processing. 186: 109099. doi:10.1016/j.mssp.2024.109099.
A complete list of Khan's publications is maintained on his Google Scholar, ORCID and Scopus profiles.[2]
References
- ↑ 1.00 1.01 1.02 1.03 1.04 1.05 1.06 1.07 1.08 1.09 1.10 1.11 1.12 1.13 1.14 1.15 1.16 1.17 "Dr. Mohammad Mansoob Khan". Universiti Brunei Darussalam. 8 December 2022. Retrieved 18 May 2026.
- ↑ 2.0 2.1 2.2 2.3 2.4 "Mohammad Mansoob Khan – Google Scholar". Google Scholar. Retrieved 18 May 2026.
- ↑ 3.0 3.1 "Prof. Dr. Mohammad Mansoob Khan". SciProfiles. MDPI. Retrieved 18 May 2026.
- ↑ 4.0 4.1 4.2 4.3 4.4 4.5 4.6 "Prof. Dr. Mohammad Mansoob Khan". Loop. Frontiers Media. Retrieved 18 May 2026.
- ↑ 5.0 5.1 "Faculty of Science Academics Among Top 2% of Scientists Globally". Faculty of Science, Universiti Brunei Darussalam. 24 January 2025. Retrieved 18 May 2026.
- ↑ 6.0 6.1 Ioannidis, John P. A.; Baas, Jeroen; Boyack, Kevin (2023). "October 2023 data-update for "Updated science-wide author databases of standardized citation indicators"". Elsevier Data Repository. 6. doi:10.17632/btchxktzyw.6.
- ↑ 7.0 7.1 "University of Brunei Darussalam – Scientist Rankings (Natural Sciences/Chemical Sciences)". AD Scientific Index. Retrieved 18 May 2026.
- ↑ 8.0 8.1 Khan, Mohammad Mansoob (2023). Theoretical Concepts of Photocatalysis. Elsevier. ISBN 978-0-323-95191-3. Search this book on
- ↑ 9.0 9.1 9.2 "Professor Mohammad Mansoob Khan". LinkedIn. Retrieved 18 May 2026.
- ↑ 10.0 10.1 "Mohammad Mansoob Khan – Research profile". ResearchGate. Retrieved 18 May 2026.
- ↑ 11.0 11.1 11.2 Khan, Mohammad Mansoob (2012). Chemistry of Dinucleating Macrocyclic Ligand and their Complexes. Saarbrücken, Germany: LAP Lambert Academic Publishing. ISBN 978-3-659-14253-6. Search this book on
- ↑ 12.0 12.1 12.2 12.3 12.4 12.5 12.6 12.7 12.8 "Prof. Dr. Mohammad Mansoob Khan". Academia.edu. Retrieved 18 May 2026.
- ↑ 13.0 13.1 13.2 "FoS Researcher Awarded 2018 Publons Award". Universiti Brunei Darussalam. Retrieved 18 May 2026.
- ↑ Matussin, S.; Harunsani, M. H.; Tan, A. L.; Khan, M. M. (2020). "Plant-Extract-Mediated SnO2 Nanoparticles: Synthesis and Applications". ACS Sustainable Chemistry & Engineering. 8 (8): 3040–3054. Bibcode:2020ASCE....8.3040M. doi:10.1021/acssuschemeng.9b06398.
- ↑ Khan, M. M.; Matussin, S. N.; Rahman, A. (2022). "Recent Progress of Phytogenic Synthesis of ZnO, SnO2 and CeO2 Nanomaterials". Bioprocess and Biosystems Engineering. 45 (4): 619–645. doi:10.1007/s00449-022-02713-z. PMID 35244777 Check
|pmid=value (help). - ↑ Zulkiflee, A.; Khan, M. M.; Harunsani, M. H. (2023). "Bismuth oxyhalides: Recent progress and its applications in photocatalysis, hydrogen production, antibacterial studies, and sensors". Materials Science in Semiconductor Processing. 163. doi:10.1016/j.mssp.2023.107547. Unknown parameter
|article-number=ignored (help) - ↑ Saravanan, R.; Khan, M. M.; Gracia, F.; Qin, J.; Gupta, V. K.; Stephen, A. (2016). "Ce3+-ion-induced visible-light photocatalytic degradation and electrochemical activity of ZnO/CeO2 nanocomposite". Scientific Reports. 6. Bibcode:2016NatSR...631641R. doi:10.1038/srep31641. PMC 4985814. PMID 27528264. Unknown parameter
|article-number=ignored (help) - ↑ 18.0 18.1 18.2 Khan, Mohammad Mansoob (2021). Chalcogenide-Based Nanomaterials as Photocatalysts. Elsevier. ISBN 978-0-12-820498-6. Search this book on
- ↑ Rahman, A.; James, R. J.; Tan, A. L.; Khan, M. M. (2022). "Molybdenum disulfide-based nanomaterials for visible-light-induced photocatalysis". ACS Omega. 7 (26): 22089–22110. Bibcode:2022ACSOm...722089R. doi:10.1021/acsomega.2c01314. PMC 9260757 Check
|pmc=value (help). PMID 35811905 Check|pmid=value (help). - ↑ Parwaiz, S.; Jennings, J. R.; Harunsani, M. H.; Khan, M. M. (2025). "Recent advances in LaCoO3-based perovskite nanostructures for electrocatalytic and photocatalytic applications". Critical Reviews in Solid State and Materials Sciences. 51: 63–104. doi:10.1080/10408436.2025.2509646.
- ↑ Parwaiz, S.; Sohn, Y.; Khan, M. M. (2025). "Insights into MXenes and MXene-based heterostructures for various photocatalytic applications". Materials Science in Semiconductor Processing. 186. doi:10.1016/j.mssp.2024.109099. Unknown parameter
|article-number=ignored (help) - ↑ Naidi, S. N.; Khan, F.; Tan, A. L.; Harunsani, M. H.; Kim, Y. B.; Khan, M. M. (2021). "Green-synthesized CeO2 nanoparticles for photocatalytic, antimicrobial, antioxidant and cytotoxicity activities". Journal of Materials Chemistry B. 9 (28): 5599–5620. doi:10.1039/D1TB00248A. PMID 34161404 Check
|pmid=value (help). - ↑ Khan, M. M.; Matussin, S. N.; Rahman, A. (2023). "Recent development of metal oxides and chalcogenides as antimicrobial agents". Bioprocess and Biosystems Engineering. 46 (9): 1231–1249. doi:10.1007/s00449-023-02878-1. PMID 37198515 Check
|pmid=value (help). - ↑ Lee, H. C.; Khan, M. M.; Yusli, A. A.; Jayaa, N. A.; Marshall, D. J. (2022). "Microplastic accumulation in oysters along a Bornean coastline (Brunei, South China Sea): insights into local sources and sinks". Marine Pollution Bulletin. 177. Bibcode:2022MarPB.17713478L. doi:10.1016/j.marpolbul.2022.113478. PMID 35276614 Check
|pmid=value (help). Unknown parameter|article-number=ignored (help) - ↑ Haji Abd Hamid, N. F.; Khan, M. M.; Lim, L. H. (2020). "Assessment of nitrate, nitrite and chloride in selected cured meat products and their exposure to school children in Brunei Darussalam". Journal of Food Composition and Analysis. 91. doi:10.1016/j.jfca.2020.103520. Unknown parameter
|article-number=ignored (help) - ↑ "Mohammad Mansoob Khan – Frontiers in Chemistry editorial board". Frontiers Media. Retrieved 18 May 2026.
- ↑ "Editorial Team – Scientia Bruneiana". Faculty of Science, Universiti Brunei Darussalam. Retrieved 18 May 2026.
- ↑ Khan, Mohammad Mansoob (2025). Photocatalysts: Synthesis and Characterization Methods. Elsevier. ISBN 978-0-443-28913-2. Search this book on
- ↑ Khan, Mohammad Mansoob; Pradhan, Debabrata; Sohn, Youngku, eds. (2017). Nanocomposites for Visible Light-Induced Photocatalysis. Springer Series on Polymer and Composite Materials. Springer. doi:10.1007/978-3-319-62446-4. ISBN 978-3-319-62445-7. Search this book on
- ↑ Jawaid, Mohammad; Khan, Mohammad Mansoob, eds. (2018). Polymer-Based Nanocomposites for Energy and Environmental Applications. Elsevier. ISBN 978-0-08-101910-8. Search this book on
External links
Faculty profile at Universiti Brunei Darussalam
Mohammad Mansoob Khan publications indexed by Google Scholar
Web of Science researcher profile
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