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Scientific Reports|June 2, 2015
Effect of aqueous and ambient atmospheric environments on plasmon-driven selective reduction reactionsQianqian Ding, Maodu Chen, Yuanzuo Li, et al.Chemical Record (New York, N.Y.)|November 3, 2022
Physicochemical Properties of High-Entropy OxidesYue Ma, Yichuan Chen, Mengtao Sun, et al.Scientific Reports|September 13, 2012
In-situ plasmon-driven chemical reactions revealed by high vacuum tip-enhanced Raman spectroscopyMengtao Sun, Zhenglong Zhang, Hairong Zheng, et al.Journal of Computational Chemistry|May 13, 2008
Spin-orbit Ab initio investigation of the photodissociation of dibromomethane in the gas and solution phasesYajun Liu, Hongyan Xiao, Mengtao Sun, et al.Analytical Chemistry|August 30, 2016
Tip-Enhanced Raman SpectroscopyZhenglong Zhang, Shaoxiang Sheng, Rongming Wang, et al.Scientific Reports|January 20, 2016
A Nanoplasmonic Strategy for Precision in-situ Measurements of Tip-enhanced Raman and Fluorescence SpectroscopyLingyan Meng, Mengtao Sun, Jianing Chen, et al.Nanotechnology|June 26, 2018
Exciton-plasmon hybrids for surface catalysis detected by SERSEn Cao, Mengtao Sun, Yuzhi Song, et al.The Journal of Physical Chemistry. A|March 29, 2007
S1 and S2 excited states of gas-phase Schiff-base retinal chromophores: a time-dependent density functional theoretical investigationMengtao Sun, Yong Ding, Ganglong Cui, et al.Langmuir : the ACS Journal of Surfaces and Colloids|October 20, 2017
Unified Treatment for Plasmon-Exciton Co-driven Reduction and Oxidation ReactionsWeihua Lin, Yaqian Cao, Peijie Wang, et al.Scientific Reports|March 19, 2015
Effect of electric field gradient on sub-nanometer spatial resolution of tip-enhanced Raman spectroscopyLingyan Meng, Zhilin Yang, Jianing Chen, et al.Pageof 362