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Xinlu Cheng, Professor




Xinlu Cheng


Ph.D., Professor

Email: chengxl@scu.edu.cn

Address: 24, South Section 1, Yihuan Road, Chengdu

Dept.: Institute of atomic and molecular physics.


Education


Ph.D.,   Institute of atomic and molecular physics, Sichuan University, China, 1994

M.S.,     Institute of atomic and molecular physics, Sichuan University, China, 1988

B.S.,     Department of Physics, Soochow University, China,1985


Biography


Dr. Xinlu Cheng is a full professor in  institute of atomic and molecular physics, Sichuan University. He received his B.S. degree in department of physics, Soochow University, in 1985, and Ph.D. degree in institute of atomic and molecular physics, Sichuan University in 1994. His primary research area lies in the atomic and molecular physics, organic molecular solid physics.


Research Areas


Interaction of atom and molecule with materials, Energetic Materials, Atomic and molecular processes under extreme conditions, Light induced electronic excitation in solids


Selected Publications


(1) Yan Gaiqin;Zhang Hong;Zhu Zhiyang;Ren Dahua;Cheng, XinLu, Different effects of electronic excitation on metals and semiconductors, Physical Review B, 2016, 93(21):214302.

(2) Jiang Xiaoxu;Chen Guanyu;Li Yutong;Guo Feng;Cheng XinLu, Phase transition and chemical decomposition of liquid oxygen and nitrogen mixture under high pressures, J. Physical Chemistry C, 2016, 120(25):13366-13374,

(3)Zeng huadong;Cheng xinlu;Zhang chaoyang;Lu zhipeng, Responses of core-shell Al/Al2O3 nanoparticles to heating: reaxFF molecular dynamics simulations, J. Physical Chemistry C, 2018, 122(16):9191-9197

(4) Ma Bo;Zhao Feng;Miao Feng;Zhang Jidong;Cheng Xinlu, The mechanical and thermal responses of colliding oxide-coated aluminum nanoparticles, J. Applied Physics, 2017, 121(14):145108.

(5) Zhu Zhi-Yang;Ma Bo;Tang Cuiming;Cheng XinLu, Molecular dynamic simulation of thermite reaction of Al nanosphere/Fe2O3 nanotube, Physics Letters A, 2016, 380(1-2):194-199.

(6) Jia Zhang;Nanlin He;Gaiqin Yan;Xinlu Cheng, Lattice response to the relaxation of electronic pressure of ultrafast laserirradiated copper and nickum, J. Physics:Condensed matter, 2018, 30(8):085401.

(7) Hong Zhang;Y. Miyamoto;Xinlu Cheng, Detection of coherent electron dynamics in benzene and polycyclic aromatic hydrocarbons by two antiphase pulses: An ab initio study, Applied Physics Letters, 2017, 111(25):253301.  

(8)Lin Jiahe;Zhang Hong;Miyamoto Y.; Cheng XinLu, Two-dimensional wide-band-gap nitride semiconductors: Single-layer 1T-XN2 (X = S, Se, and Te), Physical Review B, 2016, 94(19):1954041-1954048.

(9)Shu Xiao-qin;Zhang Hong;Miyamoto Y.;Cheng Xin-lu, Tunable plasmons in few-layer nitrogen-doped graphene nanostructures: A time-dependent density functional theory study, Physical Review B, 2016, 93(19):195424.

(10)Lin Jiahe;Zhang Hong;Miyamoto Y.;Cheng XinLu, Single-layer group IV-V and group V-IV-III-VI semiconductors: Structural stability, electronic structures, optical properties, and photocatalysis, Physical Review B, 2017, 96(3):035438.

(11)Miyamoto Y.;Zhang Hong;Cheng Xinlu;Rubio A., Modeling of laser-pulse induced water decomposition on two-dimensional materials by simulations based on time-dependent density functional theory, Physical Review B, 2017, 96(11):115451.

(12)Liu Pingping;Zhang Hong;Tang Yongjian;Cheng Xinlu. Ti-decorated B-38 fullerene: A high capacity hydrogen storage material, Int. J. Hydrogen Energy, 2016, 41(42):19123-19128.

(13) Ni Chao;Cheng Junxia;Cheng Xinlu, Ab initio calculations for the first-positive bands of N-2,J. Molecular Spectroscopy, 2017, 331:17-22.  

(14) Zhang Yafei;Cheng Xinlu, First-principles study of hydrogen storage on Li12F12 nano-cage, Chemical Physics Letters, 2017, 672:105-111.

(15) Ren Dahua;Cheng Junxia;Cheng Xinlu, Ab initio studies of Nb-N-S tri-doped TiO2 with enhanced visible light photocatalytic activity, J. Solid State Chemistry, 2016, 238:83-87.

(16) Liu Pingping;Zhang Hong;Tan, Yongjian;Cheng XinLu, External electric field: An effective way to prevent aggregation of Mg atoms on gamma-graphyne for high hydrogen storage capacity, Applied Surface Science, 2016, 371:44-49.

(17)Hong Zhang;Y. Miyamoto;A. Rubio;Xinlu Cheng, Optical field terahertz amplitude modulation by graphene nanoribbons, Nanoscale, 2015, 19012-19017.

(18) Dahua Ren;Huiran Li;Xinlu Cheng, Tailoring the electronic and optical properties of anatase TiO2 (S,Nb) co-doping froma DFT plus U calculation by(S,Nb) co-doping from a DFT plus U calculation, Solid State Communications, 2015, 223:54-59.

(19) Cheng Junxia;Chen Huajun;Zhu Xijuan;Cheng, Xinlu, Theoretical study of the ro-vibrational spectrum of CaO molecule in its two X-1 Sigma(+) and A(1) Sigma(+) states, J. Molecular Structure, 2015, 1084:122-127.

(20)Huajun Chen, XinLu Cheng,Hao Liu, Jie Wu, Studies on the electric dipole moment function and line parameters for high overtone bands of NO, J. Quantitative Spectroscopy and Radiative Transfer, 2014, 142:49-57.