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戈钧
2023-05-12 11:34
  • 戈钧
  • 戈钧 - 教授-清华大学-化学工程系-个人资料

近期热点

资料介绍

个人简历


教育与工作经历\r
2000~2004 清华大学化学工程系 本科\r
2004~2009 清华大学化学工程系 博士\r
2009~2012 斯坦福大学化学系 博士后\r
2012 清华大学化学工程系 讲师\r
2012~2020 清华大学化学工程系 副教授\r
2020~至今 清华大学化学工程系 教授\r
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主要学术任职\r
2012年~至今 中国颗粒学会 青年理事\r
2014年~至今 中国颗粒学会 生物颗粒专业委员会委员\r
2017年~至今 中国化工学会生物化工专业委员会青年学者工作委员会常务委员\r
2016年~至今 Applied Biochemistry and Biotechnology Editorial Board\r
2019年~至今 Bioresources and Bioprocessing Editorial Board\r
2020年~至今 Chinese Journal of Chemical Engineering Youth Editorial Committee Section Editor\r
2020年~至今 Chinese Journal of Catalysis Associate Editor

研究领域


"从事生物化工领域研究工作。针对生物制造、生物医药、生物安全、生物检测等对关键生物催化技术的需求,开展酶催化剂工程、生物-化学复合催化等研究。"

近期论文


Cao, Y.; Li, X.; Ge, J.* Enzyme catalyst engineering toward the integration of biocatalysis and chemocatalysis. Trends Biotechnol. 2021, doi.org/10.1016/j.tibtech.2021.01.002\r
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Cao, Y.; Ge, J.* Study of specific receptor binding mode suggests a possible enzymatic disinfectant for SARS-CoV-2. Langmuir 2021, 37, 1707-1713.\r
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Li, X.; Cao, X.; Xiong, J.; Ge, J.* Enzyme-metal hybrid catalysts for chemoenzymatic reactions. Small 2020, 16, 1902751.\r
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Hu, C.#; Bai, Y.#; Hou, M.; Wang, Y.; Wang, L.; Cao, X.; Chan, C.-W.; Sun, H.; Li, W.; Ge, J.*; Ren, K.*. Defect-induced activity enhancement of enzyme-encapsulated metal-organic frameworks revealed in microfluidic gradient mixing synthesis. Sci. Adv. 2020, 6, eaax5785.\r
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Wu, X.#; Yue, H.#; Zhang, Y.#; Gao, X.; Li, X.; Wang, L.; Cao, Y.; Hou, M.; An, H.; Gu, H.; Zhang, L.*; Li, S.*; Lou, W.; Ma, J.; Lin, H.; Fu, Y.; Wei, W.*; Zare, R. N.; Ge, J.* Packaging and delivering enzymes by amorphous metal-organic frameworks. Nat. Commun. 2019, 10, 5165.\r
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Li, X.#; Cao, Y.#; Luo, K.#; Sun, Y.; Xiong, J.; Wang, L.; Liu, Z.; Li, J.; Ma, J.; Ge, J. *; Xiao, H. *; Zare, R. N. * Highly active enzyme-metal nanohybrids synthesized in protein-polymer conjugates. Nat. Catal. 2019, 2, 718-725.\r
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Cao, Y.#; Li, X.#; Xiong, J.; Wang, L.; Yan, L.*; Ge, J.* Investigating the origin of high efficiency in confined multienzyme catalysis. Nanoscale, 2019, 11, 22108-22117.\r
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Zhang, C.; Wang, X.; Hou, M.; Li, X.; Wu, X.; Ge, J.* Immobilization on metal-organic framework engenders high sensitivity for enzymatic electrochemical detection. ACS Applied Materials & Interfaces 2017, 9, 13831-13836.\r
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Wu, X.#; Ou, G.#; Yang, C.; Ge, J.*, Wu, H.* Enhanced enzymatic reactions by solar-to-thermal conversion nanoparticles. Chemical Communications 2017, 53, 5048-5051.\r
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Zhang, Y.; Ge, J.*; Liu, Z.* Enhanced activity of immobilized or chemically modified enzymes. ACS Catalysis 2015, 5, 4503-4513.\r
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Wu, X.; Hou, M.; Ge, J.* Metal-organic frameworks and inorganic nanoflowers: a type of emerging inorganic crystal nanocarriers for enzyme immobilization. Catalysis Science & Technology 2015, 5, 5077-5085.\r
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Wu, X.; Yang, C.; Ge, J.*; Liu, Z. Polydopamine tethered enzyme/metal-organic framework composites with high stability and reusability. Nanoscale 2015, 7, 18883-18886.\r
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Wu, X.; Ge, J.*; Yang C.; Hou, M.; Liu, Z. Facile synthesis of multiple enzyme-containing metal-organic frameworks in a biomolecule-friendly environment. Chemical Communications 2015, 51, 13408-13411.\r
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Lyu, F.; Zhang, Y.; Zare, R. N.; Ge, J.*; Liu, Z.* One-pot synthesis of protein-embedded metal-organic frameworks with enhanced biological activities. Nano Lett. 2014, 14, 5761-5765.\r
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Ge, J.#; Neofytou, E.#; Lei, J.; Beygui, R. E.; Zare, R. N.* Protein-polymer hybrid nanoparticles for drug delivery. Small 2012, 8, 3573-3578.\r
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Ge, J. #; Neofytou, E. #; Cahill, III, T. J.; Beygui, R. E.; Zare, R. N.* Drug release from electric-field-responsive nanoparticles. ACS Nano 2012, 6, 227-233.\r
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Ge, J.#; Lei, J.#; Zare, R. N.* Protein-inorganic hybrid nanoflowers. Nat. Nanotech. 2012, 7, 428-432.\r
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Ge, J.; Lei, J. D.; Zare, R. N.* Bovine serum albumin-poly(methyl methacrylate) nanoparticles: an example of frustrated phase separation. Nano Letters 2011, 11, 2551-2554.

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