相关文献:
1. A new crossed molecular beam apparatus using time-sliced ion velocity imaging technique, Guorong Wu, Weiqing Zhang, Huilin Pan, Quan Shuai, Bo Jiang, Dongxu Dai and Xueming Yang, Rev. Sci. Instrum., 79, 094104 (2008).
2. Time-resolved molecular frame dynamics of fixed-in-space CS2 molecules, Christer Z. Bisgaard, Owen J. Clarkin, Guorong Wu, Anthony M. D. Lee, Oliver Gesner, Carl C. Hayden and Albert Stolow, Science, 323, 1464 (2009).
3. Crossed molecular beams ion-imaging study of the Cl + SiH4 → HCl + SiH3 reaction: product vibrational state-to-state correlation, Guorong Wu, Weiqing Zhang, Huilin Pan, Quan Shuai, Jiayue Yang, Bo Jiang, Dongxu Dai and Xueming Yang, Phys. Chem. Chem. Phys., 12, 9469 (2010).
4. Ultrafast non-adiabatic dynamics of methyl substituted ethylenes: The 3s Rydberg state, Guorong Wu, Andrey E. Boguslavskiy, Oliver Schalk, Albert Stolow, J. Chem. Phys., 135, 164309 (2011).
5. Time-resolved photoelectron spectroscopy: from wavepackets to observables, Guorong Wu, Paul Hockett, and Albert Stolow, Phys. Chem. Chem. Phys., 13, 18447 (2011).
6. How is C-H vibrational energy redistributed in F + CHD3 (?1 = 1) → HF + CD3? Jiayue yang, Dong Zhang, Bo Jiang, Dongxu Dai, Guorong Wu,* Donghui Zhang, Xueming Yang.*
论文著作:
1. Time-resolved Molecular Frame Dynamics of Fixed-in-space CS2 Molecules.
Christer Z. Bisgaard; Owen J. Clarkin; Guorong Wu; Anthony M. D. Lee; Oliver Gessner; Carl C. Hayden; Albert Stolow
SCIENCE, 2009
2. Efficient Red/Near‐Infrared‐Emissive Carbon Nanodots with Multiphoton Excited Upconversion Fluorescence
Kai-Kai Liu; Shi-Yu Song; Lai-Zhi Sui; Si-Xuan Wu; Peng-Tao Jing; Ruo-Qiu Wang; Qing-Yi Li; Guo-Rong Wu; Zhen-Zhong Zhang; Kai-Jun Yuan; Chong-Xin Shan
Advanced Science, 2019
3. Depression of Reactivity by the Collision Energy in the Single Barrier H + CD 4 → HD + CD 3 Reaction
Weiqing Zhang; Yong Zhou; Guorong Wu; Yunpeng Lu; Huilin Pan; Bina Fu; Quan Shuai; Lan Liu; Shu Liu; Liling Zhang; Bo Jiang; Dongxu Dai; Soo-Ying Lee; Zeng Xie; Bastiaan J. Braams
Proceedings of the National Academy of Sciences of the United States of America, 2010
4. Time-resolved Photoelectron Spectroscopy: from Wavepackets to Observables.
Guorong Wu; Paul Hockett; Albert Stolow
Physical Chemistry Chemical Physics, 2011
5. Excited State Non-Adiabatic Dynamics of Pyrrole: A Time-Resolved Photoelectron Spectroscopy and Quantum Dynamics Study
Guorong Wu; Simon P. Neville; Oliver Schalk; Taro Sekikawa; Michael N. R. Ashfold; Graham A. Worth; Albert Stolow
JOURNAL OF CHEMICAL PHYSICS, 2015
6. Infrared Spectroscopy of Neutral Water Clusters at Finite Temperature: Evidence for a Noncyclic Pentamer.
Bingbing Zhang; Yong Yu; Yang-Yang Zhang; Shukang Jiang; Qinming Li; Han-Shi Hu; Gang Li; Zhi Zhao; Chong Wang; Hua Xie; Weiqing Zhang; Dongxu Dai; Guorong Wu; Dong H. Zhang; Ling Jiang
Proceedings of the National Academy of Sciences, 2020
7. Infrared Spectroscopy of Neutral Water Dimer Based on a Tunable Vacuum Ultraviolet Free Electron Laser.
Bingbing Zhang; Yong Yu; Zhaojun Zhang; Yang-Yang Zhang; Shukang Jiang; Qinming Li; Shuo Yang; Han-Shi Hu; Weiqing Zhang; Dongxu Dai; Guorong Wu; Jun Li; Dong H. Zhang; Xueming Yang; Ling Jiang
The Journal of Physical Chemistry Letters, 2020
8. Following the Excited State Relaxation Dynamics of Indole and 5-Hydroxyindole Using Time-Resolved Photoelectron Spectroscopy
Ruth Livingstone; Oliver Schalk; Andrey E. Boguslavskiy; Guorong Wu; L. Therese Bergendahl; Albert Stolow; Martin J. Paterson; Dave Townsend
JOURNAL OF CHEMICAL PHYSICS, 2011
9. Infrared Spectroscopic Study of Hydrogen Bonding Topologies in the Smallest Ice Cube.
Gang Li; Yang-Yang Zhang; Qinming Li; Chong Wang; Yong Yu; Bingbing Zhang; Han-Shi Hu; Weiqing Zhang; Dongxu Dai; Guorong Wu; Dong H. Zhang; Jun Li; Xueming Yang; Ling Jiang
Nature Communications, 2020
10. Initial Processes of Proton Transfer in Salicylideneaniline Studied by Time-Resolved Photoelectron Spectroscopy.
Taro Sekikawa; Oliver Schalk; Guorong Wu; Andrey E. Boguslavskiy; Albert Stolow
The Journal of Physical Chemistry A, 2013