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Fan Fang, Wei Chen, Yang Li, Haochen Liu, Ming Mei, Ruan Zhang, Junjie Hao,Marus Mikita,Wanqiang Cao, Ruikun Pan, Kai Wang*, Xiao Wei Sun,Employing Polar Solvent Controlled Ionization in Precursors for Synthesis of High-Quality Inorgalic Perovskite Nanocrystals at Room Temperature,Adv. Funct. Mater. 2018, 1706000.
陈勇,姜朝斌,秦路,王龙海,潘瑞琨,曹万强*,反铁电体的极化与介电效应,中国科学:技术科学,2019,49(11):1309-1318.
Lu Qin,Chaobin Jiang,Kanghui Liu,Ye Chen,Yike Du,Yuandong Zuo,Yong Chen,Wanqiang Cao*,Structural and electric properties of Ce-doped Na0.5Bi4.5Ti4O15piezoceramics with high Curie temperatures,J Am Ceram Soc.2020;103:4083–4089.
曹万强,乐耀昌,陈勇,郑克玉,潘瑞琨,王龙海,反铁电体的能量释放效应,中国科学:物理学力学天文学,2020,50(6): 067701。
陈勇,段文燕,黎明锴,曹万强*,潘瑞琨,黄修林,铁电体热释电系数的本征和场致增强模式的机理,科学通报,2020, 65: 2112–2119。
曹万强,方凡,刘培朝,李阳,王仁龙,梅明,张慧婕,曾媛媛,一种钙钛矿CsPbX3量子线的合成方法,中国发明专利(ZL201710472597.3)。
曹万强,王仁龙,方凡,刘培朝,张慧婕,李阳,梅明,曾媛媛,一种快速简单制备室温CsPbX3量子点的方法,中国发明专利(ZL201710997057.7)。
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◆程佳吉:本科毕业于武汉理工大学,于2012年获得美国佛罗里达大学材料科学与工程专业硕士学位,师从C.D.Batich教授,遂加入法国波尔多大学小田玲子教授课题组继续深造,于2015年获得凝聚态物理化学博士学位。之后分别在法国凝聚态材料化学研究所以及深圳大学物理与光电学院担当博士后研究学者以及研究助理。主要从事多层次凝聚态纳米材料的手性构筑以及手性无机纳米材料立体构象的纳米光子学研究。2019年参加工作并入选湖北省省级人才计划。
程佳吉博士主要从事手性无机纳米自组装材料,手性等离子体效应以及手性荧光材料的研究。从物理化学的角度对手性诱导效应的引入提出了全新的内在机理,为该新型材料在手性药物分离,手性催化,以及超材料等应用上提供了可靠基础。近5年来,程佳吉博士主要从事手性纳米功能材料及其光电子器件的研究,在该领域发表多篇SCI收录论文,这些论文分别发表在Nature Communications、ACS Nano、Chemistry-A European Journal、The Journal of Physical Chemistry C、Angewandte Chemie-International Edition、ACS Applied Nano Materials、Materials Chemistry Frontiers等杂志上。其中包括1篇特邀综述论文。作为审稿人,目前已经多次为ACS Nano、Materials Chemistry Frontiers、The Journal of Physical Chemistry C等杂志审稿。申请并获授权国家发明专利5项,为手性纳米材料的工程化应用提供了新方法。
Jiagen Li, Junzi Li, Rulin Liu, Yuxiao Tu, Yiwen Li,Jiaji Cheng,*Tingchao He& Xi Zhu.Autonomous discovery of optically active chiralinorganic perovskite nanocrystals through anintelligent cloud lab.Nature communications,2020,https://doi.org/10.1038/s41467-020-15728-5(IF=11.8,一区)
Yiwen Li, Ziwei Miao, Zhengwen Shang, Ying Cai,Jiaji Cheng,*and Xiaoqian Xu*. A Visible- and NIR-Light Responsive Photothermal TherapyAgent by Chirality-Dependent MoO3−xNanoparticles.Adv. Funct. Mater.2020, 30, 1906311.(IF=15.8,一区)
Jiaji Cheng, Guillaume Le Saux, Jie Gao, Thierry Buffeteau, Yann Battie, Philippe Barois, Virginie Ponsinet, Marie-Hélène Delville, Ovidiu Ersen, Emilie Pouget, and Reiko Oda,GoldHelix: Gold NanoParticles Forming 3D Helical Superstructures with Controlled Morphology and Strong Chiroptical Property,ACS Nano, 2017, 11 (4), pp 3806–3818.(IF=13.7,一区)
Jiaji Cheng, Junjie Hao, Haochen Liu, Jiagen Li, Junzi Li, Xi Zhu, Xiaodong Lin, Kai Wang, and Tingchao He,Optically Active CdSe-Dot/CdS-Rod Nanocrystals with Induced Chirality and Circularly Polarized Luminescence,ACS Nano,2018, 12 (6), pp 5341–5350.(IF=13.7,一区)
Jiaji Cheng,Eric H. Hill, Yuebing Zheng, Tingchao He and Yanjun Liu,Optically Active Plasmonic Resonance in Self-assembled Nanostructures,Mater. Chem. Front.2018, 2, 662 - 678.(IF=7.8)
J. G. Li, J. Z. Li,Y. W. Li, J. J. Cheng,T. C. He, X. Zhu, “Autonomous Discovery of Optically-ActiveChiral Inorganic Perovskite Nanocrystals Through Intelligent Cloud LabNature communications,2020,https://doi.org/10.1038/s41467-020-15728-5(IF=11.8,一区)
Y. W. Li, Z. W. Miao, Z. Shang, Y. Cai, J. J. Cheng, X. Q. Xu, “A Visible- and NIR-LightResponsive Photothermal Therapy Agent by Chirality-dependent MoO3-x Nanoparticles”,Advanced Functional Materials2020, 30, 1906311.
Y. W. Li, J. J. Cheng, J. G. Li, X. Zhu, T. C. He, R. Chen, and Z. K. Tang, "Tunable ChiropticalProperties from the Plasmonic Band to Metal-Ligand Charge Transfer Band of the Cysteine-CappedMolybdenum Oxide Nanoparticles",Angewandte Chemie International Edition, 2018, 57 (32),
Y. W. Li, J. J. Cheng, J. Z. Li, M. H. Delville, M. Treguer-Delapierre, T. C. He, R. Chen, and Z. K.Tang, "Ultrafast Dynamics of Photoexcited Hot Carrier Generation and Injection inAgNWs@TiO2@GNS Nanostructures",Journal of Physical Chemistry C,2018, 122 (26), 14857-14864.
Y. W. Li, J. J. Cheng, Y. Z. Liu, P. Z. Liu, W. Q. Cao, T. C. He, R. Chen, and Z. K. Tang,“Manipulation of Surface Plasmon Resonance in Sub-Stoichiometry Molybdenum Oxide Nanodotsthrough Charge Carrier Control Technique”,Journal of Physical Chemistry C, 2017, 121 (9),5208–5214.