
白云鹏
生物化工专业:博士生导师/硕士生导师
生物工程专业:博士生导师/硕士生导师
生物与医药专业(生物工程领域):博士生导师/硕士生导师
个人简历
白云鹏,教授、博导,上海市浦江人才(2015),上海市青年拔尖人才(2023),国家高层次青年人才(2024)。本科和硕士毕业于清华大学化工系(2004)、化学系(2007),博士毕业于剑桥大学化学系(2011),瑞典皇家理工学院yl8858永利集团博士后(2012-2014),2014年加入生物反应器工程国家重点实验室,九三学社上海市委教育、制造专委会委员,上海市生物工程学会合成生物学专委会、青年工作委员会委员,Bioresources and Bioprocessing青年编委。从事微纳生物制造研究,主持国家自然科学基金面上项目、国家重点研发计划子课题等科研项目16项,在ACS Nano, ACS Catal, PNAS, Biosens.& Bioelectron., Chin. Chem. Lett., J. Agric. Food Chem.等期刊上发表论文60多篇,授权中国发明专利14项,2项在企业实现成果转化,1项完成转让,获2018年上海市技术发明一等奖(6/10),2024年获陕西省三秦英才引进计划创新人才项目,2025年被授予“美国工程化科学协会青年创新奖”(2025 Young Innovator Award, Engineered Science Society, USA)。主编《生物反应工程原理》教材1本,获中国石油和化学工业优秀出版物教材一等奖(2021),上海市教学成果奖一等奖(2022,排名第四),中国石油化工教育教学优秀成果一等奖(2022,排名第四),中国化工教育协会优秀教学成果一等奖(2020,排名第二),yl88858永利中国青年五四奖章(2018)。
研究方向
面向化工、制药和环境领域的需求,聚焦微化工反应技术创新,研究跨尺度分子传递与反应的科学问题,开展催化剂、反应工程到产业应用的系统创新,实现环境友好的生物制造。
· 新酶创制:发展高通量酶定向进化技术,构建新的酶催化反应,实现手性化合物的高效合成和重大环境污染物的高效降解。
· 多酶催化:发展基于蛋白自组装的非均相多酶催化体系,研究纳米效应调控酶催化反应的机制,开发非生物元件强化的人工生物杂合体系。
· 连续反应:设计构建微反应芯片和微反应器,开发连续流酶催化体系,探索体外多酶级联连续反应规律和产业应用。
近年主持的科研项目
1. 国家自然科学基金委面上项目,基于固定化纳米反应器的连续流酶催化及限域效应研究,22378120, 2024-2028
2. 国家重点研发计划子课题,非生物元件增强的合成生物体系高效制备及协同进化,2023YFA0913603,2023-2028
3. 国家重点研发计划子课题,固定化酶催化过程强化与长效循环策略,2021YFC2102804,2021-2023
4. 国家自然科学基金委面上项目,生物催化合成多取代手性γ-/δ-内酯及立体选择性催化机制研究,22078096, 2021-2024
5. 上海市科技重大专项子任务,新一代微化工芯片应用基础及器件设计评价,2019-2024
6. 国家重点研发计划青年项目,生物-化学复合纳米催化剂体系应用基础研究,2016YFA0204300,2016-2021
代表性论文
18. Zeng, L.F.; Guo, T.X.; Liu, J.X.; Chu, L.L.; Zhang, X.Y.; Fan, D.D.; Bai, Y.P.* Self-assembly of P22 virus-like particles in liquid-liquid phase-separated condensates for enhanced enzyme catalysis. ACS Nano, 2025, 19, 38472−38488.
17. Huanca Nina, M. R.; Zhang, X.Y.; Fan, D.D.; Bai, Y.P.* Quorum sensing based detection and biodegradation of phthalate esters by engineered Escherichia coli and Pseudomonas aeruginosa. Journal of Agricultural and Food Chemistry, 2025, 73, 27990−28004.
16. Liu, J.X.; Deng, X.L.; Huanca Nina, M. R.; Zhang, X.Y.; Fan, D.D.; Bai, Y.P.* Phase-separated dual-enzyme protein condensates e biodegradation of polyethylene terephthalate and phthalate plasticizers. Bioresource Technology, 2026, 439, 133379.
15. Guo, T.X.‡; Zeng, L.F.‡; Liu, J.X.; Zhang, X.Y.; Bai, Y.P.* Phase-separated multienzyme condensates for efficient synthesis of imines from carboxylic acids with enhanced dual-cofactor recycling. International Journal of Molecular Sciences, 2025, 26, 4795.
14. Deng, X.L.; Liu, J.X.; Zhang, X.Y.; Fan, D.D.; Zhang, Z.C.; Bai, Y.P.* Hierarchical porous silica aerogel monoliths for high-flow rate continuous-flow enzyme catalysis. ACS Sustainable Chemistry & Engineering, 2025, 13, 16, 5852–5863.
13. Yuan, P.Y.‡; Wang, Q.‡; Deng, X.L.; Zhang, X.Y.; Fan, D.D.; Bai, Y.P.* Coimmobilized dual enzymes in a continuous flow reactor for the efficient synthesis of optically pure γ/δ-lactones. ACS Applied Materials & Interfaces, 2025, 17, 1, 867–879.
12. Liu, J.X.;Chen, J.X.;Zhang,X.Y.; Fan, D.D.; Bai, Y.P.* Enhanced cofactor recycling and accelerated reaction rate via liquid-liquid phase separation in dual-enzyme condensates. Chinese Journal of Catalysis, 2025, 69, 135–148.
11. Chu, Liliang; Zhang, X.Y.; Fan, D.D.; Bai, Y.P.* Dual-enzyme catalyzed stereoselective synthesis of chiral aromatic polysubstituted γ‑butyrolactones. ACS Catalysis, 2024, 14, 17276-17285.
10. Han, Z.Y.; Huanca Nina, M. R.; Zhang, X.Y.; Huang, H.Y.; Fan, D.D.; Bai, Y.P.* Discovery and characterization of two novel polyethylene terephthalatehydrolases: one from a bacterium identified in human feces and one fromthe Streptomyces genus. Journal of Hazardous Materials, 2024, 472, 134532.
9. Chu, L.L‡; Zhang, X.Y.‡; Li, J.N.; Deng, X.L.; Wu, M.; Cheng, Y.; Zhu, W.P.; Qian, X.H.; Bai, Y.P.* Continuous-flow synthesis of polysubstituted γ-butyrolactones via enzymatic cascade catalysis. Chinese Chemical Letters, 2024, 35, 108896.
8. Deng, X.L. ‡; Fan, M. ‡; Wu, M; Zhang, X.Y.; Cheng, Y.; Xia, J.Y.; Zhuang, Y.P.; Zhu, W.P.; Qian, X.H.; Bai, Y.P.* Continuous-flow enzymatic synthesis of chiral lactones in a three-dimensional microfluidic reactor. Chinese Chemical Letters, 2024, 35, 108684.
7. Qian, Y.Y.‡; Chu, L.L.‡; Zhang, X.Y.‡; Lu, Z.W.; Bai, Y.P.* Stereoselective synthesis of structurally diverse (S)-lactams via an engineered amine dehydrogenase. Advanced Synthesis & Catalysis, 2022, 364(24), 4289-4299.
6. He, J.W.#; Zhang, X.Y.#; Qian, Y.Y.; Wang, Q.Y.; Bai, Y.P.* An engineered quorum-sensing-based whole-cell biosensor for active degradation of organophosphates. Biosensors & Bioelectronics, 2022, 206, 114085.
5. Li, J.W.‡; Huanca Nina, M.R.‡; Zhang, X.Y.‡, Bai, Y.P.* Engineering transcription factor XylS for sensing phthalic acid and terephthalic acid: an application for enzyme evolution. ACS Synthetic Biology, 2022, 11(3), 1106-1113.
4. Zhang, Y.Q.; Feng, T.T.; Cao, Y.F.; Zhang, X.Y.; Wang, T.; Huanca Nina, M.R.; Wang, L.C.; Yu, H.L.; Xu, J.H.; Ge, J.*; Bai, Y.P.* Confining enzyme clusters in bacteriophage P22 enhances cofactor recycling and stereoselectivity for chiral alcohol synthesis. ACS Catalysis, 2021, 11, 16, 10487–10493.
3. Huang, H.; Zhang, X.Y.; Zhao, Y.L.; Xu, D.S.; Bai, Y.P.* Biodegradation of structurally diverse phthalate esters by a newly identified esterase with catalytic activity toward di(2-ethylhexyl) phthalate. Journal of Agricultural and Food Chemistry, 2019, 67 (31): 8548-8558.
2. Chen, M.; Zhang, X.Y.; Zhang, C.; Zheng, Y.C.; Pan, J.; Xu, J.H.*; Bai, Y.P.* Efficient stereoselective synthesis of structurally diverse γ-/δ-lactones using an engineered carbonyl reductase. ChemCatChem, 2019, 11, 2600-2606.
1. Huang, M.T.#; Bai, Y.P.#; Sjostrom, S.L.; Hallström, B.M.; Liu, Z.H.; Petranovic, D.; Uhlén, M.; Joensson, H.N.; Andersson-Svahn, H.; Nielsen, J.*, Microfluidic screening and whole-genome sequencing identifies mutations associated with improved protein secretion by yeast. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112(34): 4689-4696.
教材
《生物反应工程原理》,夏杰,白云鹏,化学工业出版社,2019年9月
联系方式
办公室:实验5楼213室
电话:64252645
邮箱:ybai@ecust.edu.cn