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[专家学者] 浙江大学化学工程与生物工程学院陈平伟

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发表于 2020-2-4 08:27:54 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
陈平伟浙江大学“百人计划”特聘研究员。2014年博士毕业于浙江大学,师从加拿大两院院士、著名聚合反应工程专家朱世平教授;2014-2018年在MIT化工系从事博士后研究,导师美国工程院院士、著名纳米材料专家Michael Strano教授。研究领域涉及聚合物材料、二维材料、纳米复合材料、纳米传感器、纳米催化等方面。近年在Science、Nature Materials、Nature Nanotechnology等期刊上发表20余篇,获国际发明专利授权1件、美国发明专利申请2件,在层状和卷涡状二维材料/聚合物纳米复合材料、基于二维材料的智能微粒器件和合成细胞、高性能聚烯烃复合材料等方向取得了创新成果,相关成果被MIT News、Angew. Chem. Int. Ed.、Nano Today、Mater. Today等权威媒体和期刊报道和评述。


刘平伟 博士
百人计划研究员 | 博士生导师
学科 化学工程与技术
单位 化学工程与生物工程学院
二维码
电话 057187951471
邮箱 liupingwei@zju.edu.cn
地址 浙江大学玉泉校区教十


主要研究方向:
(1)   高质量二维材料的可控制备及其在高性能纳米复合材料、纳米传感器、纳米催化方向的应用;
(2)   智能聚合物材料及其微纳传感器的设计、加工及其在植物微仿生学、精准农业方向的应用;
(3)“活性”/可控聚合、烯烃配位聚合及缩聚反应工艺的研究,聚烯烃热塑性弹性体、功能聚烯烃材料及高性能功能塑料的可控制备及表征研究;
(4)   生物可降解聚合物材料及其纳米复合材料的制备及其老化、降解行为的研究;


论文
     围绕着聚合物基结构和功能复合材料制备和加工中的化工基本科学问题开展研究,近五年发表了SCI论文20篇,其中一作10篇(包括1篇Science),以共同作者在Nat. Mater. Nat. Nanotechnol. Matter 等期刊上发表2019           (35) Wang, S. Wang, W. J*., & Liu, P*. Reversible Polycondensation-Termination Growth of Covalent-Organic-Framework Spheres, Fibers, and Films. Accepted by Matter
(34) Jiang, B., Zhang, Y., Huang, X., Kang, T., Severtson, S. J., Wang, W. J., & Liu, P*. Tailoring CO2-Responsive Polymers and Nanohybrids for Green Chemistry and Processes[J]. Industrial & Engineering Chemistry Research, 2019. (33) Zhang, Y., Zhang, H., Liu, P*., Sun, H*., Li, B. G., & Wang, W. J*.. Programming Hydrogen Production via Controllable Emulsification/Demulsification in a Switchable Oil–Water System. ACS Sustainable Chemistry & Engineering. 2019. doi.org/10.1021/acssuschemeng.8b06714
(32) Huang, B., Jiang, J., Kang, M., Liu, P*., Sun, H*., Li, B. G., & Wang, W. J*. Synthesis of block cationic polyacrylamide precursors using an aqueous RAFT dispersion polymerization. RSC advances, 9(22), 12370-12383. 2019. DOI: 10.1039/C9RA02716E
(31)Yang J F, Liu P, Koman V B, et al. Synthetic Cells: Colloidal-sized state machines[M]//Robotic Systems and Autonomous Platforms. Woodhead Publishing, 2019: 361-386. doi.org/10.1016/B978-0-08-102260-3.00015-9
(30)Liu P, Koman V B, Kozawa D, et al. Materials design for robotic platforms enabling unique mechanisms of projectile protection[M]//Robotic Systems and Autonomous Platforms. Woodhead Publishing, 2019: 493-521. doi.org/10.1016/B978-0-08-102260-3.00019-6
(29) Liu, A. T., Zhang, G., Cottrill, A. L., Kunai, Y., Kaplan, A., Liu, P.& Strano, M. S. Direct Electricity Generation Mediated by Molecular Interactions with Low Dimensional Carbon Materials—A Mechanistic Perspective. Advanced Energy Materials, 8(35), 1802212. doi.org/10.1002/aenm.201802212. 2018.       (28)  Liu, P.; Koman, V. B.; Kozawa, D.; Strano M. S.  Synthetic Cells: Colloidal-sized state machines, Robotic Systems and Autonomous Platforms, book, 2019  doi: 10.1016/B978-0-08-102260-3.00019-6
(28)  Liu, P.; Koman, V. B.; Kozawa, D.; Strano M. S.  Materials Design for Robotic Platforms Enabling Unique Mechanisms of Projectile Protection, Robotic Systems and Autonomous Platforms, book, 2019  doi: 10.1016/B978-0-08-102260-3.00019-6
(27) Moran J. L., Cottrill A. L., Benck J. D.; Liu P.; Yuan Z., Strano M. S., J. Buongiorno, “Noble-Gas-Infused Neoprene Closed-Cell Foams Achieving Ultra-Low Thermal Conductivity Fabrics”, RSC Advances,2018,  DOI: 10.1039/c8ra04037k.
(26)  Liu, P.; Liu, A. T.; Kozawa, D.; Dong, J.; Saccone, M.; Koman, V. B.; Wang, S.; Son, Y.; Wong, M. H.; Strano, M. S. Autoperforation of 2D Materials for Generating Two Terminal Memresistive Janus Particles. Nat. Mater. 2018 , DOI:10.1038/s41563-018-0197-z. (封面文章)
(25) Koman, V. B.; Liu P, T.; Kozawa D.; Liu, A.; Cottrill L. A.; Son, Y.;  Lebron A. J.; Strano S. M.  Colloidal, Nanoelectronic State Machines Based on 2D Materials for Aerosolizable Electronics, Nat. Nanotechnol.  2018, doi:10.1038/s41565-018-0194-z.
(24) Yeong K. Seon.; Giraldo J. P.; Lew. T. S. Tedrick.; Wong M. H.; Liu P.; Yun Jung Yang, Koman, V. B.; McGee K. Melissa.; Olsen, D. B.; Strano. S. M.  Polymethacrylamide and Carbon Composites that Grow, Strengthen and Self--Repair using Ambient Carbon Dioxide Fixation, Advanced Materials 2018, doi:10.1002/adma.201804037.
(23) Liu, P.; Cottrill, A. L.; Kozawa, D.; Koman, V. B.; Kaplan, Liu, A. T.; Tran, T.; Wong, M. H.; Strano, M. S. Emerging trends in 2D nanotechnology that are redefining our understanding of Nanocomposites. Nano Today, 2018, doi.org/10.1016/j.nantod.2018.04.012.
(22)Zhang Y, Liu P*, Li BG, Wang WJ*.; CO2-Triggered Recoverable Metal Catalyst Nanoreactors using Unimolecular Core–Shell Star Copolymers as Carriers. ACS Applied Nano Materials, DOI: 10.1021/acsanm. 8b00031.
(21) Cottrill, A. L.; Liu, A. T.; Kunai, Y.; Koman, V. B.; Kaplan, A.; Mahajan, S. G.; Liu, P.; Toland, A. R.; Strano, M. S. Ultra-High Thermal Effusivity Materials for Resonant, Ambient Thermal Energy Harvesting. Nat. Comm. 2017, 9, 664
(20) Kunai, Y.; Liu, A. T.; Cottrill, A. L.; Koman, V. B.; Liu, P.; Kozawa, D.; Gong, X.; Strano, M. S., Observation of the Marcus Inverted Region of Electron Transfer from Asymmetric Chemical Doping of Pristine (n, m) Single-Walled Carbon Nanotubes. ‎J. Am. Chem. Soc. 2017, DOI: 10.1021/jacs.7b04314.
(19) Wang, S.; Cottrill, A. L.; Kunai, Y.; Toland, A. R.; Liu, P.; Wang, W.-J.; Strano, M. S., Microscale solid-state thermal diodes enabling ambient temperature thermal circuits for energy applications. Phys. Chem. Chem. Phys. 2017, 19, 13172.
(18) Liu, P.; Jin, Z.; Katsukis, G.; Drahushuk, L. W.; Shimizu, S.; Shih, C.-J.; Wetzel, E. D.; Taggart-Scarff, J. K.; Qing, B.; Van Vliet, K. J., Layered and scrolled nanocomposites with aligned semi-infinite graphene inclusions at the platelet limit. Science 2016, 353, 364.
(17) Wong, M. H.; Giraldo, J. P.; Kwak, S.-Y.; Koman, V. B.; Sinclair, R.; Lew, T. T. S.; Bisker, G.; Liu, P.; Strano, M. S., Nitroaromatic detection and infrared communication from wild-type plants using plant nanobionics. Nat. Mater. 2016, 16, 264.
(16) Liu, P.; Strano, M. S., Toward Ambient Armor: Can New Materials Change Longstanding Concepts of Projectile Protection? Adv. Funct. Mater. 2016, 26, 943.
(15)  Liu, A. T.; Kunai, Y.; Liu, P.; Kaplan, A.; Cottrill, A. L.; Smith-Dell, J. S.; Strano, M. S. Electrical Energy Gene-ration via Reversible Chemical Doping on Carbon Nanotube Fibers. Adv. Mater. 2016, 28, 9752.
(14)  Son, Y.; Li, M.-Y.; Cheng, C.-C.; Wei, K.-H.; Liu, P.; Wang, Q. H.; Li, L.-J.; Strano, M. S., Observation of switchable photoresponse of a monolayer WSe2–MoS2 lateral heterostructure via photocurrent spectral atomic force microscopic imaging. Nano Lett. 2016, 16, 3571.
(13) Liu, P.; Liu, W.; Wang, W. J.; Li, B. G.; Zhu, S., A Comprehensive Review on Controlled Synthesis of Long‐Chain Branched Polyolefins: Part 1, Single Catalyst Systems. Macromol. React. Eng. 2016, 10, 156.
(12) Liu, W.; Liu, P.; Wang, W.-J.; Li, B.-G.; Zhu, S., A Comprehensive Review on Controlled Synthesis of Long-Chain-Branched Polyolefins: Part 2, Multiple Catalyst Systems and Prepolymer Modification. Macromol. React. Eng. 2016, 10, 180.
(11) Liu, P.; Liu, W.; Wang, W. J.; Li, B. G.; Zhu, S., A Comprehensive Review on Controlled Synthesis of Long‐Chain Branched Polyolefins: Part 3, Characterization of Long‐Chain Branched Polymers. Macromolecular Reaction Engineering 2016, 10.1002/mren.201600012.
(10) Wang, S.; Liu, P.; Wang, W.-J.; Zhang, Z.; Li, B.-G., Hyperbranched polyethylene-supported L-proline: a highly selective and recyclable organocatalyst for asymmetric aldol reactions. Catal. Sci. Technol. 2015, 5, 3798.
(09) Wei, Y.; Liu, P.; Wang, W.-J.; Li, B.-G.; Zhu, S., Well-controlled and stable emulsion ATRP of MMA with low surfactant concentration using surfactant–ligand design as the copper capture agent. Polym. Chem. 2015, 6 (15), 2837.
(08) Liu, P.; Lu, W.; Wang, W.-J.; Li, B.-G.; Zhu, S., Highly CO2/N2-switchable zwitterionic surfactant for Pickering emulsions at ambient temperature. Langmuir 2014, 30, 10248.
(07)  Liu, P.; Zhang, Y.; Wang, W.-J.; Li, B.-G.; Zhu, S., CO2-triggered fast micellization of a liposoluble star copolymer in water. Green Mater. 2014, 2, 82.
(06) Liu, P.; Ye, Z.; Wang, W.-J.; Li, B.-G., Synthesis of polyethylene and polystyrene miktoarm star copolymers using an “in–out” strategy. Polym. Chem. 2014, 5, 5443.
(05) Liu, P.; Dong, Z.; Ye, Z.; Wang, W.-J.; Li, B.-G., A conveniently synthesized polyethylene gel encapsulating palladium nanoparticles as a reusable high-performance catalyst for Heck and Suzuki coupling reactions. J. Mater. Chem. A 2013, 1, 15469.
(04) Liu, P.; Ye, Z.; Wang, W.-J.; Li, B.-G., Hyperbranched Polyethylenes Encapsulating Self-Supported Palladium (II) Species as Efficient and Recyclable Catalysts for Heck Reaction. Macromolecules 2012, 46, 72.
(03) Liu, P.; Lu, W.; Wang, W.-J.; Li, B.-G.; Ye, Z.; Zhu, S., Synthesis and Characterization of PE-b-POEGMA Copolymers Prepared by Linear/Hyperbranched Telechelic Polyethylene-Initiated ATRP of Oligo(ethylene glycol) Methacrylates. In Progress in controlled radical polymerization: mechanisms and techniques, American Chemical Society: 2012; Vol. 4, 39.            
(02) Liu, P.; Landry, E.; Ye, Z.; Joly, H.; Wang, W.-J.; Li, B.-G., “Arm-first” synthesis of core-cross-linked multiarm star polyethylenes by coupling palladium-catalyzed ethylene “living” polymerization with atom-transfer radical polymerization. Macromolecules 2011, 44, 4125.
(01) Wang, W. J.; Liu, P.; Li, B. G.; Zhu, S., One‐step synthesis of hyperbranched polyethylene macroinitiator and its block copolymers with methyl methacrylate or styrene via ATRP J. Polym. Sci., Part A: Polym. Chem. 2010, 48, 3024.

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 楼主| 发表于 2020-2-4 08:28:27 | 只看该作者
阿基米德螺旋型二维纳米复合纤维的制备及性能研究
批准号        51903218       
学科分类        纳米复合 ( E030703 )
项目负责人        刘平伟       
依托单位        浙江大学
资助金额        25.00万元       
项目类别        青年科学基金项目       
研究期限        2020 年 01 月 01 日 至2022 年 12 月 31 日

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