简介:
副研究员,天津大学光学工程专业博士学位,东京大学大学与日本电气通信大学博士后。2009年回到物理所工作。目前主要研究方向为各类功能纳米材料的超快动力学研究。
主要研究方向:
功能纳米材料的超快动力学研究
代表性论文及专利:
- Quantum phase synchronization revealing few-hundred femtosecond coherence in cryptophyte phycoerythrin 545 antenna from exciton–vibrational coupling, Jiayu Wang , Jiading Zou , Zhanghe Zhen, Hanting Meng , Guohong Liao , Li Liu , Zhuan Wang, Hailong Chen , Yang Pu , Yuxiang Weng *, J. Chem. Phys. 2025, 162, 205101
- Photoexcited Electron and Hole Polaron Formation in CdS Single Crystals Revealed by Femtosecond Time-Resolved IR Spectroscopy, Yanjun Xu, Zhuan Wang, Hailong Chen, Yuxiang Weng*, The Journal of Physical Chemistry C, 2024, 128, 2096−2106
- Rules for Selecting Metal Cocatalyst Based on Charge Transfer and Separation Efficiency between ZnO Nanoparticles and Noble Metal Cocatalyst Ag/ Au/ Pt, Qianxia Liu, Zhuan Wang*, Hailong Chen, Hao-Yi Wang, Hui Song, Jinhua Ye, and Yuxiang Weng*, ChemCatChem 2020, 12, 3838–3842
- Boosting visible-light driven solar-fuel production over g-C3N4/tetra(4-carboxyphenyl)porphyrin iron(III) chloride hybrid photocatalyst via incorporation with carbon dots, Xuehua Zhanga, Lin Lin, Dan Qu, Jiangong Yang, Yuxiang Weng, ZhuanWang*, Zaicheng Sun*, YongChen,* TaoHe*, Applied Catalysis B: Environmental, Volume 265, 15 May 2020, 118595
- Effect of trap states on photocatalytic properties of boron-doped anatase TiO2 microspheres studied by time-resolved infrared spectroscopy, Yijie Du, Zhuan Wang*, Hailong Chen, Hao-Yi Wang, Gang Liud and Yuxiang Weng *, Phys.Chem.Chem.Phys., 2019, 21, 4349
- Plasmon-induced hot electron transfer in Au–ZnO heterogeneous nanorods for enhanced SERS, Jun Zhou, Jianshuo Zhang,‡ Haitao Yang, * Zhuan Wang, * Jin-an Shi,Wu Zhou, Nan Jiang, Guoyu Xian, Qi Qi, Yuxiang Weng, Chengmin Shen,Zhaohua Cheng and Shengtai He *, Nanoscale, 2019, 11, 11782
- Coupling of multi-vibrational modes in bacteriochlorophyll a in solution observed with 2D electronic spectroscopy, Shuai Yue, Zhuan Wang, Xuan Leng, Ruidan Zhu, Hailong Chen, Yuxiang Weng*, Chemical Physics Letters 2017, 683, 591-597
- Multi-channel lock-in amplifier assisted femtosecond time-resolved fluorescence non-collinear optical parametric amplification spectroscopy with efficient rejection of superfluorescence background, Mao Pengcheng; Wang Zhuan; Dang Wei; Weng Yuxiang*, REVIEW OF SCIENTIFIC INSTRUMENTS,2015, 12113
- Construction of the Apparatus for Two Dimensional Electronic Spectroscopy and Characterization of the Instrument, Yue Shuai; Wang Zhuan; He Xiaochuan; Zhu Gangbei; *Weng Yuxiang, CHINESE JOURNAL OF CHEMICAL PHYSICS, 2015, 28(4), 509
Email:
zhuanwang@iphy.ac.cn
