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1.Liang Cheng,XianfangZhu*, Jiangbin Su, Coalescence between Au nanoparticles as-induced by nanocurvature effect and electron beam athermal activation effect,Nanoscale2018, 10, 7978-7983.(JCR1区,IF=6.97)
2.L. Cheng, S.Y. Ma*, X.B. Li,et al.,Highly sensitive acetone sensorsbased on Y-doped SnO2prismatichollow nanofiberssynthesized by electrospinning,Sensors and Actuators B: Chemical2014,200,181–190.(JCR1区,IF=6.393,高被引)
3.L. Cheng, S.Y. Ma*,T.T. Wang,et al.,Synthesis and characterization of SnO2hollow nanofibers by electrospinning for ethanol sensing properties,Materials Letters2014,131,23–26.(JCR2区,IF=3.019)
4.L. Cheng, S.Y. Ma*,T.T. Wang,et al.,Highly sensitive acetic acid gas sensor based on coral-like and Y-doped SnO2nanoparticles prepared byelectrospinning,Materials Letters2014,137,265–268.(JCR2区,IF=3.019)
5.L. Cheng, S.Y. Ma*,T.T. Wang, J. Luo.Synthesis and enhanced acetone sensing properties of 3D porous flower-like SnO2nanostructures,Materials Letters2015,143,84–87.(JCR2区,IF=3.019)
6.LiangCheng,JiangbinSu, Xianfang Zhu*,Athermal coalescence of two parallel and contacting amorphous SiOxnanowires as induced by uniform e-beam irradiation,Materials Letters2019, 237,286–289.(JCR2区,IF=3.019)
7.JiangbinSu, Xianfang Zhu*,LiangCheng,Metal passivation effect on focused beam-induced nonuniform structure changes of amorphous SiOx nanowire,Journal of Alloys and Compounds2018, 735, 2336-2340.
8.T.T. Wang, S.Y. Ma*,L. Cheng,et al.,Preparation of Yb-doped SnO2hollow nanofibers with an enhanced ethanol-gas sensing performance by electrospinning,Sensors and Actuators B: Chemical2015,216,212-220.
9.T.T. Wang, S.Y. Ma*,L. Cheng,et al.,Performance of 3D SnO2microstructure with porous nanosheets for acetic acid sensing,Materials Letters2015,142,141–144.
10.J. Luo, S.Y. Ma*,L. Cheng,et al.,Facile fabrication and enhanced acetic acid sensing properties of honeycomb-like porous ZnO,Materials Letters2015,138,100–103.
11.J. Luo, S.Y. Ma*, A.M. Sun,L. Cheng,et al.,Ethanol sensing enhancement by optimizing ZnO nanostructure: From 1D nanorods to 3D nanoflower,Materials Letters2014,137,17–20.
12.F.M.Li,X.B.Li,S.Y.Ma,L.Cheng,et al.,Influence of Ce doping on microstructure of ZnO nanoparticles and their acetone sensing properties,Journal of Alloys and Compounds2015, 649, 1136-1144.
13.W.X. Jin, S.Y. Ma*, A.M. Sun, J. Luo,L. Cheng,et al.,Synthesis of hierarchical SnO2nanoflowers and their high gas-sensing properties, Mater. Lett. 143 (2015) 283–286.
14.W.Q. Li, S.Y. Ma*, J. Luo, Y.Z. Mao,L. Cheng,et al.,Synthesis of hollow SnO2nanobelts and their application in acetone sensor, Mater. Lett. 132 (2014) 338–341.
15.S.H.Yan,S.Y.Ma,W.Q.Li,X.L.Xu,L.Cheng,H.S.Song,X.Y.Liang,Synthesis of SnO2–ZnO heterostructured nanofibers for enhanced ethanol gas-sensing performance,Sens Actuators B: Chem. 221(2015)88-95.
16.J. Luo, S.Y. Ma*, F.M. Li, X.B. Li, W.Q. Li,L. Cheng,et al.,The mesoscopic structure of flower-like ZnO nanorods for acetone detection, Mater. Lett. 121 (2014) 137–140.
17.Wenqi Li, Shuyi Ma*, Guijin Yang, Yuzhen Mao, Jing Luo,Liang Cheng,et al.,Preparation, characterization and gas sensing properties of pure and Ce doped ZnO hollow nanofibers, Mater. Lett. 138 (2015) 188–191.
18.W.X. Jin, S.Y. Ma*, Z.Z. Tie, W.Q. Li,J. Luo,L. Cheng,et al.,Synthesis of hierarchical SnO2nanoflowerswith enhanced acetic acidgassensing properties,Applied Surface Science353 (2015) 71-78.
19.W.Q. Li, S.Y. Ma*, Y.F. Li, X.B. Li, C.Y. Wang, X.H. Yang,L. Cheng,et al.,Preparation of Pr-doped SnO2hollow nanofibers by electrospinning method and their gas sensing properties, J. Alloys Compd. 605 (2014) 80–88.
20.Y.Z. Mao, S.Y. Ma*, W.Q. Li, X.L. Xu, D.J. Gengzang, J. Luo,L. Cheng. Synthesis of porous spherical ZnO nanoparticles and measurement of their gas-sensing property, Mater. Lett. 134 (2014) 80–83.
21.X.H. Jiang, S.Y. Ma*, W.Q. Li, T.T. Wang, W.X. Jin, J. Luo,L. Cheng,et al.,Synthesis of hierarchical ZnO nanostructure assembled by nanorods and their performance for gas sensing, Mater. Lett. 142 (2015) 299–303.
22.W.X. Jin, S.Y. Ma*, Z.Z. Tie, J.J. Wei, J. Luo, X.H. Jiang, T.T. Wang, W.Q. Li,L. Cheng,et al.,One-step synthesis and highly gas-sensing properties of hierarchical Cu-doped SnO2nanoflowers, Sens Actuators B: Chem. 213 (2015) 171–180.