1 |
肖健 |
男 |
1990.04 |
华中科技大学材料物理与化学专业博士 |
SCI 6篇(含共同一作) 1. J. Xiao, Z. Y. Zhang, Y. Zhang, Q. Y. Lv, F. Jing, K. Chi, S. Wang*. Scalable, Printing Fabrication of High-Performance Transition Metal Phosphide-Based Electrocatalysts for Hydrogen Evolution Reaction. Nano Energy 2018, 51, 223. (SCI,IF=13.12) 2. J. Xiao, Y. Zhang, Z. Y. Zhang, Q. Y. Lv, F. Jing, K. Chi, S. Wang*. Self-Supported Biocarbon-Fiber Electrode Decorated with Molybdenum Carbide Nanoparticles for Highly Active Hydrogen-Evolution Reaction. ACS Applied Materials & Interfaces 2017, 9, 22604.(SCI,IF=8.097) 3. J. Xiao, Q. Y. Lv, Y. Zhang, Z. Y. Zhang, S. Wang*. One-Step Synthesis of Nickel Phosphide Nanowire Array Supported on Nickel Foam with Enhanced Electrocatalytic Water Splitting Performance. RSC Advances 2016, 6, 107859.(SCI,IF=2.936) 4. F. Jing#, Q. Y. Lv#, J. Xiao#, Q. J. Wang, S. Wang*. Highly Active and Dual-function Self-supported Multiphase NiS-NiS2-Ni3S2/NF Electrodes for Overall Water Splitting. Journal of Materials Chemistry A 2018, 6, 14207. (SCI,IF=9.931)(共同一作) 5. Y. Zhang#, J. Xiao#, Q. Y. Lv, S. Wang*. Self-supported Transition Metal Phosphide Based Electrodes as High-efficient Water Splitting Cathodes. Frontiers of Chemical Science and Engineering 2018, 12, 494. (SCI,IF=2.643)(共同一作) 6. Q. Y. Lv#, F. Jing#, Y. Huang, J. Xiao#, Y. Zhang, F. Xiao, J. W. Xiao, S. Wang*. Vertically Aligned Heteroatom Doped Carbon Nanosheets from Unzipped Self-Doped Carbon Tubes for High Performance Supercapacitor. ACS Sustainable Chemistry & Engineering 2018, 6, 5, 6042.(SCI,IF=6.14)(共同一作) |
化药学院 |
年薪制C档 |
2 |
黄玲 |
女 |
1985.09 |
北京化工大学化学工程与技术专业博士 |
SCI 17篇(含导师一作及共同一作) 1. L. Huang, Z. Liu, W. Chen, D. Cao*, A. Zheng*, Two-dimensional graphitic C3N5 materials: Promising metal-free catalysts and CO2 adsorbents. Journal of Materials Chemistry A, 2018, 6 (16), 7168-7174. IF=9.931 2. J. Li#, L. Huang#, X. Zou, A. Zheng*, H. Li, H. Rong, G. Zhu, Porous organic materials with ultra-small pores and sulfonic functionality for xenon capture with exceptional selectivity. Journal of Materials Chemistry A, 2018, 6 (24), 11163-11168. IF=9.931 3. G. Li#, L. Huang#, X. Yi, Y.-K. Peng, S. C. E. Tsang, A. Zheng*, A nonpolar solvent effect by ch/ interaction inside zeolites: Characterization, mechanism and concept. Chemical Communications, 2018, 54 (95), 13435-13438. IF=6.290 4. H. Qiong#, L. Huang#, J. Q. Li, A. M. Zheng*, Y. Tao, L. X. Yang, W. H. Yin, F. Luo*, Pd@Zn-MOF-74: Restricting a guest molecule by the open-metal site in a metal-organic framework for selective semihydrogenation. Inorganic Chemistry, 2018, 57 (20), 12444-12447. IF=4.700 5. G. Wang#, L. Huang#, W. Chen, J. Zhou, A. Zheng*, Rationally designing mixed Cu-(μ-O)-M (M = Cu, Ag, Zn, Au) centers over zeolite materials with high catalytic activity towards methane activation. Physical Chemistry Chemical Physics, 2018,20 (41), 26522-26531. IF=3.906 6. C. B. Fan#, L. Le Gong#, L. Huang#, F. Luo*, R. Krishna*, X. F. Yi, A. M. Zheng*, L. Zhang, S. Z. Pu, X. F. Feng, M. B. Luo, G. C. Guo*, Significant enhancement of C2H2/C2H4 separation by a photochromic diarylethene unit: A temperature- and light-responsive separation switch. Angewandte Chemie-International Edition, 2017,56 (27), 7900-7906. IF=12.102 7. L. Huang, G. Cao*, 2D squaraine-linked polymers with high lithium storage capacity using the first principle methods. Chemistryselect, 2017,2 (4), 1728-1733. IF=1.505 8. L. Huang, G. Cao*, 2D squaraine-bridged covalent organic polymers with promising CO2 storage and separation properties. Chemistryselect, 2016,1 (3), 533-538. IF=1.505 9. L. Huang, X. Zeng, D. Cao*, Tetrahedral node diamondyne frameworks for CO2 adsorption and separation. Journal of Materials Chemistry A, 2014,2 (14), 4899-4902. IF=9.931 10. L. Huang, D. Cao*, Selective adsorption of olefin-paraffin on diamond-like frameworks: Diamondyne and PAF-302. Journal of Materials Chemistry A, 2013,1 (33), 9433-9439. IF=9.931 11. L. Huang, Z. Xiang, D. Cao*, A porous diamond carbon framework: A new carbon allotrope with extremely high gas adsorption and mechanical properties.Journal of Materials Chemistry A, 2013,1 (12), 3851-3855. IF=9.931 12. L. Huang, D. Cao*, Mechanical properties of polygonal carbon nanotubes. Nanoscale, 2012,4 (17), 5420-5424. IF=7.233 13. L.Huang, Z. Xiang, D. Cheng, J. Lan, W. Wang, T. Ben, D. Cao*, Semiconducting and conducting transition of covalent-organic polymers induced by defects. Nanotechnology, 2012,23 (39). IF=3.404 14. W. Chen, L. Huang*, X. Yi, A. Zheng*, Lithium doping on 2D squaraine- bridged covalent organic polymers for enhancing adsorption properties: A theoretical study. Physical Chemistry Chemical Physics, 2018,20 (9), 6487-6499. IF=3.906 15. G. Ren, G. Wang, H. Mei*, Y. Xu*, L. Huang*, Reaction mechanism investigationof furfural conversion to 2-methylfuran on Cu(111) surface. Chemical PhysicsLetters, 2018,703, 1-7. IF=1.686 16. G. Li, X. Yi, L. Huang*, J. Jiang, Z. Yu, Z. Liu, A. Zheng*, Solvent effect insidethe nanocage of zeolite catalysts: A combined solid-state NMR approach andmultiscale simulation. Journal of Physical Chemistry C, 2017,121 (31), 16921-16931. IF=4.484 17. Z. Liu, Y. Chu, X. Tang, L. Huang*, G. Li, X. Yi, A. Zheng*, Diffusiondependence of the dual-cycle mechanism for MTO reaction inside ZSM-12 and ZSM-22 zeolites. Journal of Physical Chemistry C, 2017,121 (41), 22872-22882. IF=4.484 主持国家级科研项目1项,省级科研项目1项,博士后科学基金1项 |
化药学院 |
年薪制B档 |
5 |
徐翔 |
男 |
1983.02 |
中科院福建物质结构研究所物理化学专业博士 副研究员(2016.12) |
SCI 11篇(含通讯作者及共同一作) 1. Jianghe Feng†, Xiang Xu†, Chun-Li Hu, and Jiang-Gao Mao*, “K6ACaSc2(B5O10)3 (A = Li, Na, Li0.7Na0.3): Nonlinear-Optical Materials with Short UV Cutoff Edges”, Inorg. Chem. 2019, 58, 2833-2839. (IF = 4.700) 2. Wen-Wen Wang, Xiang Xu*, Jin-Tao Kong, and Jiang-Gao Mao*, “RE(SO4)[B(OH)4](H2O), RE(SO4)[B(OH)4](H2O)2, and RE(SO4)[B(OH)4](H2O)·H2O: Rare-Earth Borate-Sulfates Featuring Three Types of Layered Structures”, Inorg. Chem. 2018, 57, 163-174. (IF = 4.700) 3. Xiang Xu, Fang Song*, Xile Hu*, “A nickel iron diselenide-derived efficient oxygen-evolution catalyst”, Nature Communications, 2016, 7, 12324. (IF = 12.353) 4. Xiang Xu, Chun-Li Hu, Bing-Xuan Li, and Jiang-Gao Mao*, “K2Au(IO3)5 and β-KAu(IO3)4: Polar Materials with Strong SHG Responses Originating from Synergistic Effect of AuO4 and IO3 Units”, Chem. Eur. J. 2016, 22, 1750-1759. (IF = 5.160) 5. Xiang Xu, Chun-Li Hu, Bing-Xuan Li, Bing-Ping Yang and Jiang-Gao Mao*, “α-AgI3O8 and β-AgI3O8 with Large SHG Responses: Polymerization of IO3 Groups into the I3O8 Polyiodate Anion”, Chem. Mater. 2014, 26, 3219-3230. (IF = 9.890) 6. Xiang Xu, Bing-Ping Yang, Chao Huang and Jiang-Gao Mao*, “Explorations of New Second-Order Nonlinear Optical Materials in the Ternary Rubidium Iodate System: Noncentrosymmetric β-RbIO3(HIO3)2 and Centrosymmetric Rb3(IO3)3(I2O5)(HIO3)4(H2O)”, Inorg. Chem. 2014, 53, 1756-1763. (IF = 4.700) 7. Xiang Xu, Chun-Li Hu, Bing-Ping Yang and Jiang-Gao Mao*, “Syntheses, Crystal Structures and Magnetic Properties of Three New Silver Manganese(II) or Manganese(III) Mixed Metal Iodates”, CrystEngComm, 2013, 15, 7776-7782. (IF = 3.304) 8. Xiang Xu, Chun-Li Hu, Fang Kong, Jian-Han Zhang, Jiang-Gao Mao* and Junliang Sun*, “Cs2GeB4O9: a New Second-Order Nonlinear Optical Crystal”, Inorg. Chem. 2013, 52, 5831-5837. (IF = 4.700) 9. Xiang Xu, Chun-Li Hu, Fang Kong, Jian-Han Zhang and Jiang-Gao Mao*, “Ca10Ge16B6O51 and Cd12Ge17B8O58: Two Types of New 3D Frameworks Based on BO4 Tetrahedra and 1D [Ge4O12]n Chains”, Inorg. Chem. 2011, 50, 8861-8868. (IF = 4.700) 10. Xiang Xu and Ning Ye*, “GdxLa1-xSc3(BO3)4: a New Nonlinear Optical Crystal”, J. Cryst. Growth, 2011, 324, 304-308. (IF = 1.742) 11. Xiang Xu, Shichao Wang and Ning Ye*, “A New Nonlinear Optical Crystal BixLayScz(BO3)4 (x + y + z = 4)”,J. Alloys Compd. 2009, 481, 664-667. (IF = 3.779) 主持国家级科研项目1项,省级科研项目1项 发明专利7项(含导师第一本人第二) |
光电、数理学院 |
第五层次:优秀人才 |
9 |
黄春波 |
男 |
1990.04 |
华中农业大学风景园林学专业博士 |
SCI 4篇,EI 1篇 1. Chunbo Huang, Zhixiang Zhou*, Changhui Peng, Mingjun Teng, Pengcheng Wang. How is biodiversity changing in response to ecological restoration in terrestrial ecosystems? A meta-analysis in China. Science of The Total Environment. 2019, 650, 1-9. (SCI, IF=4.610) 2. Chunbo Huang, Xin Huang, Changhui Peng, Zhixiang Zhou*, Mingjun Teng, Pengcheng Wang. Land use/cover change in the Three Gorges Reservoir area, China: Reconciling the land use conflicts between development and protection. Catena. 2019, 175, 388-399. (SCI, IF=3.256) 3. Chunbo Huang, Pei Huang, Xiaoshuang Wang, Zhixiang Zhou*. Assessment and optimization of green space for urban transformation in resources-based city–A case study of Lengshuijiang city, China. Urban Forestry & Urban Greening. 2018, 30, 295-306. (SCI、SSCI, IF=2.782) 4. Chunbo Huang, Zhixiang Zhou*, Di Wang, Yuanyong Dian*. Monitoring forest dynamics with multi-scale and time series imagery. Environmental Monitoring and Assessment. 2016, 188(5), 1-15. (SCI, IF=1.804) 5.黄春波,佃袁勇*, 周志翔,王娣,陈瑞冬.基于时间序列统计特性的森林变化监测.遥感学报. 2015, 19(4), 657-668. (EI) |
艺术学院 |
年薪制C档 |