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Journal of Biotechnology & Biomaterials received 3330 citations as per Google Scholar report
Articles published in Journal of Biotechnology & Biomaterials have been cited by esteemed scholars and scientists all around the world. Journal of Biotechnology & Biomaterials has got h-index 24, which means every article in Journal of Biotechnology & Biomaterials has got 24 average citations.
Following are the list of articles that have cited the articles published in Journal of Biotechnology & Biomaterials.
2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | |
---|---|---|---|---|---|---|---|---|---|
Total published articles |
40 | 51 | 64 | 62 | 61 | 12 | 10 | 26 | 40 |
Research, Review articles and Editorials |
35 | 29 | 41 | 10 | 7 | 9 | 0 | 0 | 0 |
Research communications, Review communications, Editorial communications, Case reports and Commentary |
5 | 13 | 11 | 16 | 4 | 0 | 0 | 0 | 0 |
Conference proceedings |
0 | 10 | 16 | 0 | 0 | 66 | 324 | 313 | 331 |
Citations received as per Google Scholar, other indexing platforms and portals |
215 | 333 | 386 | 399 | 376 | 335 | 241 | 185 | 208 |
Journal total citations count | 3330 |
Journal impact factor | 5.12 |
Journal 5 years impact factor | 6.92 |
Journal cite score | 6.05 |
Journal h-index | 24 |
Journal h-index since 2019 | 20 |
Vancouver: Das S, Chakraborty T. A review on green synthesis of silver nanoparticle and zinc oxide nanoparticle from different plants extract and their antibacterial activity against multi-drug resistant bacteria. |
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Vancouver: Panneerselvam E, Priya CL, Kuncha J, Venugopal K, Kanwalkar HM, et al. (2020) Plant-Based Synthesis Processes for the Production of Metal and Nonmetal Nanoparticles. Biological Synthesis of Nanoparticles and Their Applications. 2:5. |
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Vancouver: Murugesan K, Rajendran SN, Assefa G, Adugna AT, Kebede M. (2019) Facile development of sunlit ZnO nanoparticles-activated carbon hybrid from pernicious weed as an operative nano-adsorbent for removal of methylene blue and chromium from aqueous solution: Extended application in tannery industrial wastewater. Environmental Technology & Innovation. |
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Vancouver: Chaudhari S, Nikam S. BIOSYNTHESIS OF METALLIC NANOPARTICLES. |
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Vancouver: El‐Gendy NS, El‐Gendy NS, Omran BA. (2019) Green Synthesis of Nanoparticles for Water Treatment. Nano and Bio‐Based Technologies for Wastewater Treatment: Prediction and Control Tools for the Dispersion of Pollutants in the Environment 205-263. |
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Vancouver: Hajiashrafi S, Motakef-Kazemi N. (2018) Green synthesis of zinc oxide nanoparticles using parsley extract. Nanomedicine Research Journal 3:44-50. |
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Vancouver: Prabhu R, Mohammed MA, Anjali R, Archunan G, Prabhu NM, et al. (2019) Ecofriendly one pot fabrication of methyl gallate@ ZIF-L nanoscale hybrid as pH responsive drug delivery system for lung cancer therapy. Process Biochemistry 84;39-52. |
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Vancouver: Kamaraj M, Srinivasan NR, Assefa G, Adugna AT, Kebede M. (2020) Facile development of sunlit ZnO nanoparticles-activated carbon hybrid from pernicious weed as an operative nano-adsorbent for removal of methylene blue and chromium from aqueous solution: Extended application in tannery industrial wastewater. Environmental Technology & Innovation 17. |
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Vancouver: Solomon S. Synthesis Of Zno Nanoparticles Using Leaf Extract Of Kalanchoae Petitiana And Evaluation Of Its Antibacterial Activities (Doctoral dissertation, ASTU). |
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Vancouver: Monish S, Sangeetha S, Damodharan N. (2018) Green synthesis of nanoparticles and their applications. Drug Invention Today 2;10. |
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Vancouver: Irshad S, Salamat A, Anjum AA, Sana S, Saleem RS, et al. (2018) Green tea leaves mediated ZnO nanoparticles and its antimicrobial activity. Cogent Chemistry 4. |
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Vancouver: Gupta M, Tomar RS, Kaushik S, Sharma D, Mishra RK. (2018) Effective antimicrobial activity of green ZnO nano particles of Catharanthus roseus. Frontiers in microbiology 9:2030. |
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Vancouver: Sharmila G, Thirumarimurugan M, Muthukumaran C. (2019) Green synthesis of ZnO nanoparticles using Tecoma castanifolia leaf extract: Characterization and evaluation of its antioxidant, bactericidal and anticancer activities. Microchemical Journal 145:578-587. |
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Vancouver: Li X, Zheng Y. (2019) Biotransformation of lignin: Mechanisms, applications and future work. Biotechnology progress 6. |
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Vancouver: Anthony WE, Carr RR, DeLorenzo DM, Campbell TP, Shang Z, et al. (2019) Development of Rhodococcus opacus as a chassis for lignin valorization and bioproduction of high-value compounds. Biotechnology for biofuels 12:192. |
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Vancouver: Li X. Lignin bioconversion and upgrading to value-added products by marine protist, Thraustochytrium striatum (Doctoral dissertation). |
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Vancouver: Mahan KM, Le RK, Wells T, Anderson S, Yuan JS, et al. (2018) Production of single cell protein from agro-waste using Rhodococcus opacus. Journal of industrial microbiology & biotechnology 45:795-801. |
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Vancouver: Yang J, Ching YC, Chuah CH. (2019) Applications of lignocellulosic fibers and lignin in bioplastics: A review. Polymers 11:751. |
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Vancouver: Martins-Santana L, Nora LC, Sanches-Medeiros A, Lovate GL, Cassiano MH, et al. (2018)Systems and synthetic biology approaches to engineer fungi for fine chemical production. Frontiers in bioengineering and biotechnology 6. |
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Vancouver: Xu Z, Lei P, Zhai R, Wen Z, Jin M. (2019) Recent advances in lignin valorization with bacterial cultures: microorganisms, metabolic pathways, and bio-products. Biotechnology for biofuels 12:32. |
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