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1.S.K. Zhao, Y.B. Shen*, P.F. Zhou, F.L. Hao, X.Y. Xu, S.L. Gao*, D.Z. Wei, Y.X. Ao, Y.S. Shen, Enhanced NO2 sensing performance of ZnO nanowires functionalized with ultra-fine In2O3 nanoparticles, Sensors and Actuators B: Chemical, 308 (2020) 127729. (IF: 6.393,被SCI/EI检索,一区)
2.Y.Y. Yin, Y.B. Shen*, P.F. Zhou, R. Lu, A. Li, S.K. Zhao, W.G. Liu, D.Z. Wei, K.F. Wei, Fabrication, characterization and n-propanol sensing properties of perovskite-type ZnSnO3 nanospheres based gas sensor, Applied Surface Science, 509 (2020) 145335. (IF: 5.155,被SCI/EI检索,一区)
3.T.T. Li, Y.B. Shen*, X.X. Zhong, S.K. Zhao, G.D. Li, B.Y. Cui*, D.Z. Wei, K.F. Wei, Effect of noble metal element on microstructure and NO2 sensing properties of WO3 nanoplates prepared from a low-grade scheelite concentrate, Journal of Alloys and Compounds, 818 (2020) 152927. (IF: 4.175,被SCI/EI检索,一区)
4.Y.B. Shen*, X.X. Zhong*, J. Zhang, T.T. Li, S.K. Zhao, B.Y. Cui, D.Z. Wei, Y.H. Zhang, K.F. Wei, In-situ growth of mesoporous In2O3 nanorod arrays on a porous ceramic substrate for ppb-level NO2 detection at room temperature, Applied Surface Science, 498 (2019) 143873. (IF: 5.155,被SCI/EI检索,一区)
5.X.X. Chen, Y.B. Shen*, P.F. Zhou, S.K. Zhao, X.X. Zhong, T.T. Li, C. Han, D.Z. Wei, D. Meng, NO2 sensing properties of one-pot-synthesized ZnO nanowires with Pd functionalization, Sensors and Actuators B: Chemical, 280 (2019) 151-161. (IF: 6.393,被SCI/EI检索,一区,ESI高被引论文)
6.X.X. Chen, Y.B. Shen*, P.F. Zhou, X.X. Zhong, G.D. Li, C. Han*, D.Z. Wei, S. Li, Bimetallic Au/Pd nanoparticles decorated ZnO nanowires for NO2 detection, Sensors and Actuators B: Chemical, 289 (2019) 160-168. (IF: 6.393,被SCI/EI检索,一区)
7.S.K. Zhao, Y.B. Shen*, P.F. Zhou, X.X. Zhong, C. Han, Q. Zhao, D.Z. Wei, Design of Au@WO3 core−shell structured nanospheres for ppb-level NO2 sensing, Sensors and Actuators B: Chemical, 282 (2019) 917-922. (IF: 6.393,被SCI/EI检索,一区,ESI高被引论文)
8.S.K. Zhao, Y.B. Shen*, X.X. Yan, P.F. Zhou, Y.Y. Yin, R. Lu, C. Han, B.Y. Cui, D.Z. Wei, Complex-surfactant-assisted hydrothermal synthesis of one-dimensional ZnO nanorods for high-performance ethanol gas sensor, Sensors and Actuators B: Chemical, 286 (2019) 501-511. (IF: 6.393,被SCI/EI检索,一区)
9.X.X. Zhong, Y.B. Shen*, S.K. Zhao, X.X. Chen, C. Han, D.Z. Wei, P. Fang, D. Meng, SO2 sensing properties of SnO2 nanowires grown on a novel diatomite-based porous substrate, Ceramics International, 45 (2019) 2556-2565. (IF: 3.45,被SCI/EI检索,一区)
10.W. Zhang, Y.B. Shen*, J. Zhang, H.S. Bi, S.K. Zhao, P.F. Zhou, C. Han, D.Z. Wei, N. Cheng, Low-temperature H2S sensing performance of Cu-doped ZnFe2O4 nanoparticles with spinel structure, Applied Surface Science, 470 (2019) 581-590. (IF: 5.155,被SCI/EI检索,一区)
11.S.K. Zhao, Y.B. Shen*, P.F. Zhou, G.D. Li, C. Han, D.Z. Wei, X.X. Zhong, Y.H. Zhang, Y.X. Ao, Influence of synthesis conditions on microstructure and NO2 sensing properties of WO3 porous films synthesized by non-hydrolytic sol-gel method, Nanomaterials, 9 (2019) 9010008. (IF: 4.034,被SCI/EI检索,一区)
12.T.T. Li, Y.B. Shen*, S.K. Zhao, X.X. Zhong, W. Zhang, C. Han, D.Z. Wei, D. Meng, Y.X. Ao, Sub-ppm level NO2 sensing properties of polyethyleneimine-mediated WO3 nanoparticles synthesized by a one-pot hydrothermal method, Journal of Alloys and Compounds, 783 (2019) 103-112. (IF: 4.175,被SCI/EI检索,一区)
13.X.X. Chen, Y.B. Shen*, X.X. Zhong, T.T. Li, S.K. Zhao, P.F. Zhou, C. Han, D.Z. Wei, Y.S. Shen, Synthesis of ZnO nanowires/Au nanoparticles hybrid by a facile one-pot method and their enhanced NO2 sensing properties, Journal of Alloys and Compounds, 783 (2019) 503-512. (IF: 4.175,被SCI/EI检索,一区)
14.T.T. Li, Y.B. Shen*, S.K. Zhao, Y.Y. Yin, R. Lu, S.L. Gao, C. Han, D.Z. Wei, Leaching kineticsof scheelite concentrate with sodium hydroxide in the presence of phosphate, Transactions of Nonferrous Metals Society of China, 29 (2019) 634-640. (IF: 2.338,被SCI/EI检索,一区).
15.P.F. Zhou, Y.B. Shen*, S.K. Zhao, G.D. Li, Y.Y. Yin, R. Lu, S.L. Gao, C. Han, D.Z. Wei, NO2 sensing properties of WO3 porous films with honeycomb structure, Journal of Alloys and Compounds, 789 (2019) 129-138. (IF: 4.175,被SCI/EI检索,一区)
16.Y.B. Shen*, H.S. Bi, T.T. Li, X.X. Zhong, X.X. Chen, A.F. Fan, D.Z. Wei*, Low-temperature and highly enhanced NO2 sensing performance of Au-functionalized WO3 microspheres with a hierarchical nanostructure, Applied Surface Science, 434 (2018) 922-931. (IF: 5.155,被SCI/EI检索,一区)
17.S.K. Zhao, Y.B. Shen*, P.F. Zhou, J. Zhang, W. Zhang, X.X. Chen, D.Z. Wei, P. Fang, Y.S. Shen, Highly selective NO2 sensor based on p-type nanocrystalline NiO thin films prepared by sol−gel dip coating, Ceramics International, 44 (2018) 753-759. (IF: 3.45,被SCI/EI检索,一区)
18.X.X. Chen, Y.B. Shen*, W. Zhang, J. Zhang, D.Z. Wei, R. Lu, L.J. Zhu, H.S. Li, Y.S. Shen, In-situ growth of ZnO nanowire arrays on the sensing electrode via a facile hydrothermal route for high-performance NO2 sensor, Applied Surface Science, 435 (2018) 1096-1104. (IF: 5.155,被SCI/EI检索,一区)
19.T.T. Li, Y.B. Shen*, S.K. Zhao, X.X. Chen, G.D. Li, R. Lu, L.J. Zhu, H.S. Li, D.Z. Wei, Y.S. Shen, Xanthate sensing properties of Pt-functionalized WO3 microspheres synthesized by one-pot hydrothermal method, Ceramics International, 44 (2018) 4814-4823. (IF: 3.45,被SCI/EI检索,一区)
20.H. Fan, S.C. Xu, X.M. Cao, D.X. Liu, Y.Y. Yin, H.Y. Hao, D.Z. Wei, Y.B. Shen*, Ultra-long Zn2SnO4-ZnO microwires based gas sensor for hydrogen detection, Applied Surface Science, 400 (2017) 440-445. (IF: 5.155,被SCI/EI检索,一区)
21.Y.B. Shen*, W. Wang, X.X. Chen, B.Q. Zhang, D.Z. Wei, S.L. Gao, B.Y. Cui, Nitrogen dioxide sensing using tungsten oxide microspheres with hierarchical nanorod-assembled architectures by a complexing surfactant-mediated hydrothermal route, Journal of Materials Chemistry A, 4 (2016) 1345-1352. (IF: 10.733,被SCI/EI检索,一区)
22.Y.B. Shen*, X.X. Yan, S.K. Zhao, X.X. Chen, D.Z. Wei*, S.L. Gao, C. Han, D. Meng, Ethanol sensing properties of TeO2 thin films prepared by non-hydrolytic sol-gel process, Sensors and Actuators B: Chemical, 230 (2016) 667-672. (IF: 6.393,被SCI/EI检索,一区)
23.Y.B. Shen*, S.K. Zhao, J.W. Ma, X.X. Chen, W. Wang, D.Z. Wei*, S.L. Gao, W.G. Liu, C. Han, B.Y. Cui, Highly sensitive and selective room temperature alcohol gas sensors based on TeO2 nanowires, Journal of Alloys and Compounds, 664 (2016) 229-234. (IF: 4.175,被SCI/EI检索,一区)
24.Y.B. Shen*, W. Wang, A.F. Fan, D.Z. Wei, W.G. Liu, C. Han, Y.S. Shen, D. Meng, X.G. San, Highly sensitive hydrogen sensors based on SnO2 nanomaterials with different morphologies, International Journal of Hydrogen Energy, 40 (2015) 15773-15779. (IF: 4.084,被SCI/EI检索,一区)
25.Y.B. Shen*, B.Q. Zhang, X.M. Cao, D.Z. Wei*, J.W. Ma, L.J. Jia, S.L. Gao, B.Y. Cui, Y.C. Jin, Microstructure and enhanced H2S sensing properties of Pt-loaded WO3 thin films, Sensors and Actuators B: Chemical, 193 (2014) 273-279. (IF: 6.393,被SCI/EI检索,一区)
26.殷尧禹, 卢瑞, 李昂, 韩聪, 魏德洲, 沈岩柏*, 张云海. 用闪锌矿制备ZnS-ZnO异质结及其NO2气敏特性. 中国有色金属学报, 30 (2020) 383-391. (EI收录)
27.钟祥熙, 沈岩柏*, 李停停, 赵思凯, 高淑玲, 魏德洲, 张云海. 基于硅藻土多孔陶瓷衬底制备SnO2纳米线及其低温H2S气敏性能. 中国有色金属学报, 已接收. (EI收录)
28.周鹏飞, 张威, 赵思凯, 沈岩柏*. Cu2+诱导黄铁矿合成α-Fe2O3纳米多面体的生长机理. 东北大学学报(自然科学版), 41 (2020) 408-412. (EI收录)
29.李停停, 李国栋, 钟祥熙, 魏德洲, 韩聪, 沈岩柏*. Au掺杂浓度对WO3微米球NO2气敏特性的影响. 中国有色金属学报, 29 (2019) 81-90. (EI收录)
30.周鹏飞, 赵思凯, 王玮, 沈岩柏*. PEG/WCl6添加比例对WO3薄膜形貌及气敏特性的影响. 东北大学学报(自然科学版), 40 (2019) 1166-1171. (EI收录)
31.赵思凯, 钟祥熙, 周鹏飞, 沈岩柏*. 基于NiO纳米薄膜的NO2传感器. 东北大学学报(自然科学版), 39 (2018) 1769-1773. (EI收录)
32.沈岩柏*, 马嘉伟, 魏德洲, 张宝庆. 热蒸发法制备TeO2纳米线的生长机理. 东北大学学报(自然科学版), 37 (2016) 558-562. (EI收录)
33.王玮, 张琳博, 张津, 沈岩柏*. 基板材质对TeO2纳米线微观结构的影响. 功能材料, 46 (2015) 23016-23020. (EI收录)
34.沈岩柏*, 范安锋, 张宝庆, 曹先敏, 魏德洲, 刘文刚, 高淑玲. 磁控溅射WO3薄膜的制备及其NO2气敏特性研究. 功能材料, 46 (2015) 7118-7121. (EI收录)
35.沈岩柏*, 张宝庆, 曹先敏, 魏德洲, 刘文刚, 高淑玲. 基片温度对WO3薄膜的微观结构和NO2气敏特性的影响. 中国有色金属学报, 25 (2015) 740-746. (EI收录)