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周曉國

發(fa)布者:徐勇強發布時間:2017-10-31瀏覽次數:6069

姓名(ming): 周曉國(guo)

出生: 1976.03, 甘肅蘭州(zhou)

地址: 安徽省(sheng)合肥市金寨路96號,188bet足球化學(xue)物理系

電話: 86-551-63600031

傳真: 86-551-63600031

E-mail: [email protected]

 
EDUCATION AND RESEARCH EXPERIENCE

2021-                188bet足球化學物理系,教授

2004-2021   188bet足球化學物理系,副(fu)教授(shou)

2002-2004 美國俄(e)亥俄(e)州立大學化學系,博士后

1997-2002 188bet足球化學物理系,博(bo)士

1993-1997 188bet足球化學物理系(xi),學士

 

RESEARCH INTERESTS

1)

新型質譜(pu)和(he)光(guang)譜(pu)技術的(de)發展

2)

氣相分子光電離(li)和光解離(li)動力(li)學

3)

光誘導的(de)能量(liang)轉移和電子轉移動(dong)力學

 

CURRENT RESEARCH PROJECTS

1)

乙烯(xi)基和(he)乙炔基離子的光譜和(he)解離動力學,國家自然科(ke)學基金面上(shang)項目(21573210)

2)

高對稱性分子離子光解離動力學研究(jiu),國家自然科學基金面上項(xiang)目(mu)(21373194)

3)

紅(hong)外激光(guang)解離光(guang)譜-離子阱質譜聯用儀器的(de)研制與(yu)集成,國(guo)家重大科學儀器設備開發專(zhuan)項(2012YQ220113)

4

重要化(hua)學鍵能的高精度測量,國家重點研發計劃(2016YFF0200502

 

REPRESENTATIVE PUBLICATIONS

1)

Q. H Zhou, M. M. Zhou,   Y. X Wei, X. G. Zhou,* et al., “Solvent Effect on Triplet-Triplet   Annihilation Upconversion of diiodo-Bodipy and Perylene”, Phys.   Chem. Chem. Phys. 19(2017), 1516

2)

X. K. Wu, X. G. Zhou,* P.   Hemberger, et al.,“Dissociative Photoionization of Dimethyl Carbonate: The   More It Is Cut, the Bigger the fragment ion”, J. Phys. Chem. A 121(2017), 2748

3)

X. F. Tang, X. G. Zhou*,   Z. F. Sun, et al., “Dissociation of internal energy-selected methyl bromide   ion revealed from threshold photoelectron-photoion coincidence velocity   imaging”, J. Chem. Phys. 140 (2014),   044312

4)

X. F.   Tang, X. G. Zhou*, M. M. Wu, et al., “Dissociation   limit and dissociation dynamic of CF4+: application of   threshold photoelectron-photoion coincidence velocity imaging”, J. Chem. Phys. 138 (2013), 094306.

5)

X. F. Tang, X. G. Zhou*, M. M. Wu, et   al., Dissociative   photoionization of methyl chloride studied with threshold   photoelectron-photoion coincidence velocity imaging”, J. Chem. Phys. 136 (2012), 034304.

6)

X. F.   Tang, X.G. Zhou*, M. M. Wu, et. al. “Direct Experimental   Evidences for Dissociative Photoionization of Oxygen Molecule via 2Σu   Ionic “Optical Dark” State”, J.   Phys. Chem. A 116 (2012), 9459.

7)

X.   F. Tang, M. L. Niu, X. G. Zhou*, et al., “NO+ formation pathways in dissociation of N2O+   ions at the C2Σ+ state revealed from threshold   photoelectron-photoion coincidence velocity imaging”, J. Chem. Phys. 134, (2011), 054312.

8)

X.   F. Tang, X. G. Zhou*,   M. L. Niu, et al., “Dissociation of Vibrational State-selected   O2+ Ions in the B2Σgˉ State Using Threshold Photoelectron-photoion   Coincidence Velocity Imaging”, J.   Phys. Chem. A 115 (2011), 6339

9)

X. F.   Tang, X. G. Zhou*, M. L. Liu, et al., A threshold photoelectron-photoion coincidence spectrometer   with double velocity imaging using synchrotron radiation”, Rev. Sci. Instrum. 80 (2009), 113101.

  

 

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