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张健华,男,武汉纺织大学化学与化工学院讲师。本科毕业于武汉科技大学,硕、博士毕业于武汉理工大学,博士期间获国家留学基金委全额资助赴美国宾夕法尼亚州立大学(Pennsylvania State University)联合培养近两年。主要从事光驱动微纳米马达的设计与应用探索、生物化学样品前处理等方面研究。主持省重点实验室基金2项,校基金1项;参研国家自然科学基金3项。目前已在国际权威学术期刊上发表学术论文20余篇,其中以第一作者及通讯作者身份在Trends in Chemistry、ACS Nano(2)、Research、Journal of Colloids and Interface Science、ACS Applied Materials & Interface(2)、Applied Materials Today、iScience等期刊上发表学术论文共13篇。已授权中国发明专利1项。担任Front. Chem.评审编辑。
①仿生趋化性TiO2/Au微纳米马达集群的构建与其智能趋化增强行为研究,校基金,2万,主持
②单分散二氧化钛微球制备技术,横向项目,3万,主持;
③SnS2基光催化纤维的构建及其降解VOCs机理研究,湖北省重点实验室开放基金,主持;
④MnO2/MnWO4纳米管的合成及其光催化降解VOCs机理研究,湖北省重点实验室开放基金;主持。
[1] Zhang J.*, Song J., Fang Y., Cao P., Mou F., Guan J., Sen, A.* H2O2-sensitized single-component TiO2micromotors: blue-light-driven propulsion and collective cell manipulation. ChemicalCommunications 2025, 61, 9428-9431.
[2] Zhang J., FangY., Lin J., Du W., Feng Z., Lin Y., Xu L., Liu L.*,Guan J., Mou F.* Generalizedand scalable synthesis of manganese dioxide-basedtubular micromotors for heavymetal ion removal. ACS Nano, 2024, 18,29248-29260.
[3] Tseng Y., Song J., ZhangJ.,Shandilya E., Sen A.* Chemomechanicalcommunication between liposomes based on enzymecascades. J. Am.Chem. Soc.2024, 146: 16097–16104.
[4] Song J., Zhang J.*,Lin J.,Shklyaev O., Shrestha S., Sapre A., Balazs A.*, Sen A.* Programmingfluid motion using multi-enzyme micropump systems. ACS Appl. Mater.Interfaces. 2024, 16:45660–45670.
[5] Zhang J., Fang Y., Zhang Y., LinY., Gui Y., Liu L.* Photocatalyticdegradation ofvolatile organic compounds over WO2/SnS2 Nanofibers.ACS Appl. Nano Mater. 2023, 6: 22301–22310.
[6] Zhang J., LinY., Liu L.* Electrontransfer in heterojunctioncatalysts. Phys. Chem. Chem. Phys.2023,25: 7106-7119.
[7] Zhang J., Du W.,Chen L., Lin Y.,Gui Y., Liu L.* Optimizingelectronic states of Pd/WO3nanofibers for enhanced catalytic reduction ofhexavalent chromium with formicacid. J. Colloid InterfaceSci. 2023,652: 1917-1924.
[8] Zhang J., Laskar A., Song J., Shklyaev O. E., Mou F., Guan J., BalazsA. C.*,Sen A.* Light-powered, fuel-free oscillation, migration, andreversiblemanipulation of multiple cargo types by micromotor swarms. ACS Nano2023,17: 251–262.
[9] Che S., Zhang J.,Mou F.*, Guo X., Kauffman J. E., Sen A., Guan J.*Light-programmable assembliesof isotropic micromotors. Research. 2022, 2022:1-12. (共第一作者)
[10] Zhang J., Mou F.*, Tang S., Kauffman J. E., Sen A.*, Guan J.*Photochemical micromotor ofeccentric core in isotropic hollow shell exhibitingmultimodal motion behavior.Appl. Mater. Today. 2022, 26: 101371.
[11] Song J., Zhang J.,Krishna Mani S., Sen A.* Droplet navigation byphotothermal pumping in anoptofluidic system. Langmuir. 2022, 38: 11486-11491.
[12] Zhang J., Mou F.*, Wu Z., Song J., Kauffman J. E., Sen A., Guan J.Cooperative transport byflocking phototactic micromotors. Nanoscale Adv. 2021,3:6157-6163.
[13] Zhang J., SongJ., Mou F., Guan J.*, Sen A.* Titania-basedmicro/nanomotors: Designprinciples, biomimetic collective behavior, andapplications. Trends Chem.2021, 3: 387-401.
[14] Liang X., Mou F.*, Huang Z., Zhang J., You M., Xu L., Luo M., GuanJ.* Hierarchical microswarms withleader–follower‐like structures: Electrohydrodynamicself‐organizationandmultimode collective photoresponses. Adv. Funct. Mater. 2020, 30:1908602.
[15] Mou F., Li X., Xie Q., Zhang J., Xiong K., Xu L., Guan J.* Activemicromotor systems built frompassive particles with biomimetic predator-preyinteractions. ACS Nano. 2019,14: 406-414.
[16] Zhang J., MouF.*, Wu Z., Tang S., Xie H., You M., Liang X., Xu L.,Guan J. Simple-structuredmicromotors based on inherent asymmetry in crystallinephases: Design,large-scale preparation, and environmental application. ACSAppl. Mater.Interfaces. 2019, 11: 16639-16646.
[17] Mou F., Zhang J.,Wu Z., Du S., Zhang Z.*, Xu L., Guan J.*Phototactic flocking of photochemicalmicromotors. iScience. 2019, 19: 415-424. (共第一作者)
[18] Zhang J., Guo J., Mou F.*, Guan J.* Light-controlled swarming andassembly of colloidalparticles. Micromachines. 2018, 9: 88.

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