孙琦
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孙琦,博士,浙江大学研究员,博士生导师。2014年毕业于浙江大学化学系;2015-2019在美国南佛罗里达大学从事博士后研究; 2019年9月入职浙江大学化学工程与生物工程学院联合化学反应工程研究所。主要从事多孔聚合物基仿生膜材料设计以及它们在生物传感器及智能可穿戴设备、新型可再生能源转化、光电响应可控传输等领域的应用。目前以第一作者或通讯作者已在J. Am. Chem. Soc.、 Nat. Commun.、 Angew. Chem.、Adv. Mater.以及Chem等世界知名期刊发表论文40余篇,引用4000余次,其中12篇ESI高被引论文。研究领域
"""""仿生智能膜材料设计\r新型可再生能源转化\r光电响应可控传输\r智能传感器设计"近期论文
Bio-Inspired Construction of Ion Conductive Pathway in Covalent Organic Framework Membranes for Efficient Lithium Extraction. S. Bing, W. Xian, S. Chen, Y. Song, L. Hou, X. Liu, S. Ma,* Q. Sun,* L. Zhang Matter, 2021, 3, Accepted.\r\rCovalent organic framework nanofluidic membrane as a platform for highly sensitive bionic thermosensation. P. Zhang, S. Chen, C. Zhu, L. Hou, W. Xian, X. Zuo, Q. Zhang, L. Zhang, S. Ma,* Q. Sun* Nat. Communs, 2021, 12, Accepted.\r\rUnderstanding the ion transport behavior across nanofluidic membranes in response to the charge variations. L. Hou, W. Xian, S. Bing, Y. Song, Q. Sun*, L. Zhang, S. Ma* Adv. Fun. Mater, 2021, 2009970.\r\rWettability control of metal-organic framework. Q. Sun, S. Ma* Synthetic inorganic chemistry, 2021, Elsevier (book chapter).\r\rSpatial Engineering Direct Cooperativity between Binding Sites for Uranium Sequestration. Q. Sun, Y. Song, B. Aguila, A. S. Ivanov, V. S. Bryantsev, S. Ma* Adv. Sci., 2021, 8, 2001573.\r\rExploration of advanced porous organic polymers as a platform for biomimetic catalysis and molecular recognition. P. Zhang, S. Wang, S. Ma, F.-S. Xiao, Q. Sun* Chem. Commun., 2020, 56, 10631-10641.\r\rSecondary sphere effects on porous polymeric organocatalysts for CO2 transformations: subtle modifications resulting in superior performance. Y. Song, Q. Sun*, P. C. Lan, S. Ma* ACS Appl. Mater. Interfaces, 2020, 12, 32827-32833. \r\rPorous organic polymer nanotrap for efficient extraction of palladium. B. Aguila, Q. Sun*, H. C. Cassady, C. Shan, Z. Liang, A. M. Al-Enizic, A. Nafadyc, J. T. Wright, R. W. Meulenberg, S. Ma* Angew Chem. Int. Ed., 2020, 59, 19618-19622. (VIP)\r\rTurning on catalysis: construction of triphenylphosphine moieties into porous frameworks. F. Chen, S. Wang, Q. Sun*, F.-S. Xiao* ChemCatChem, 2020, 12, 3285-3289.\r\rTailored porous organic polymers for task-specific water purification. Q. Sun, B. Aguila, Y. Song, S. Ma* Acc. Chem. Res., 2020, 53, 812-821.\r\rOptimizing the performance of porous pyridinium frameworks for carbon dioxide t ransformation. Y. Song, Q. Sun*, B. Aguila, S. Ma* Catal. Today, 2020, 356, 557-562.\r\rProgramming covalent organic frameworks for photocatalysis:investigation of chemical and structural variations. S. Wang, Q. Sun*, W. Chen, Y. Tang, B. Aguila, Y. Pan, A. Zheng, Z. Yang, L. Wojtas, S. Ma*, F.-S. Xiao* Matter, 2020, 2, 416-427.\r\rMapping out the degree of freedom of hosted enzymes in confined spatial environments.Q. Sun, Y. Pan, X. Wang, H. Li, J. Farmakes, B. Aguila, Z. Yang*, S. Ma* Chem, 2019, 5, 3184-3195. (IF=18.21)\r\rLocation matters: cooperativity of catalytic partners in porous organic polymers fo enhanced CO2 transformation. K. Hu, Y. Tang, J. Cui, Q. Gong, C. Hu, S. Wang, K. Dong, X. Meng, Q. Sun*, F.-S. Xiao* Chem. Commun., 2019, 55, 9180-9183. (IF=6.17)\r\rBio-inspired creation of heterogeneous reaction vessels via polymerization of supramolecular ion pair. K. Dong, Q. Sun*, Y. Tang, C. Shan, B. Aguila, S. Wang, X. Meng, S. Ma*, F.-S. Xiao* Nat. Commun., 2019, 10, 3059. (IF=11.88)\r\rBoosting the hydrolytic stability of phosphite ligand in hydroformylation by the construction of superhydrophobic porous framework. Y. Tang, K. Dong, S. Wang, Q. Sun*, X. Meng, F.-S. Xiao* Mol. Catal., 2019, 474, 110408. (IF=2.94)\r\rReaction environment modification in covelent organic frameworks for catalytic performance enhancement. Q. Sun, Y. Tang, B. Aguila, S. Wang, F.-S. Xiao*, P. K. Thallapally, A. M. Al-Enizi, A. Nafady, S. Ma* Angew Chem. Int. Ed., 2019, 58, 8670-8675. (IF=12.26)\r\rOptimizing radionuclide sequestration in anion nanotraps with record pertechnetate sorption. Q. Sun, L. Zhu, B. Aguila, P. K. Thallapally, C. Xu, J. Chen, S. Wang*, D. Rogers, S. Ma* Nat. Commun., 2019, 10, 1646. (IF=11.88)\r\rTuning pore heterogeneity in covalent organic frameworks for enhanced enzyme accessibility and resistance against denaturants. Q. Sun, B. Aguila, P. C. Lan, S. Ma* Adv. Mater., 2019, 31, 1900008. (IF=25.81)\r\rOpportunities of Porous Organic Polymers for Radionuclide Sequestration. Q. Sun, B. Aguila, S. Ma* Trends in Chemistry, 2019, 1, 292-303.标签: 浙江大学 化学工程与生物工程学院
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