1.Ligand Defect Density Regulation in Metal-Organic Frameworks by Functional Group Engineering on Linkers, Qihao Yang, Yinming Wang, Xuan Tang, Qiuju Zhang, Sheng Dai*, Huaitao Peng, Yichao Lin, Ziqi Tian, Zhiyi Lu*, Liang Chen*, Nano Lett. 2022, 22, 838–845.
2.Sublayer Stable Fe Dopant in Porous Pd Metallene Boosts Oxygen Reduction Reaction, Shaoda Huang, Shuanglong Lu*, Shun Gong, Qiuju Zhang*, Fang Duan, Han Zhu, Hongwei Gu, Weifu Dong, Mingliang Du*, ACS Nano 2022, 16, 1, 522–532.
3.Atomically Dispersed High-Density Al–N4 Sites in Porous Carbon for Efficient Photodriven CO2 Cycloaddition, Qihao Yang, Huaitao Peng, Qiuju Zhang, Xu Qian, Linjuan Zhang,* Zhiyi Lu,* Liang Chen*, Adv. Mater. 2021, 33, 2103186
4.A novel Cl- modification approach to develop highly efficient photocatalytic oxygen evolution over BiVO4 with AQE of 34.6, Zhang, Qiqi, Liu, Min, Zhou, Wei, Zhang, Yajun, Hao, Weichang, Kuang, Yongbo, Liu, Huimin, Wang, Defa, Liu, Lequan*, Ye, Jinhua, Nano Energy, 81, 10565, 2021
5.3.17% efficient Cu2ZnSnS4–BiVO4 integrated tandem cell for standalone overall solar water splitting, Dingwang Huang, Yongbo Kuang, Energy & Environmental Science, 2021
6.Modeling Electrified Pt(111)-Had/Water Interfaces from Ab Initio Molecular Dynamics, Le, Jia-Bo Chen, AoLi Lang, Jing-Fang Xiong, Jinggang Lan, Yun-Pei Liu, Iannuzzi Marcella, Jun Cheng*, JACS Au，2021，5, 1, 569-577.
7.Fast and Stable Electrochemical Production of H2O2 by Electrode Architecture Engineering,Wenwen Xu, Liang Zheng, Shun Gong, Baoshan Zhang, Hui Wang, Linfeng Su, Xu Chen, Nana Han, Ziqi Tian, Kallio, Tanja, Liang Chen*, Zhiyi Lu*, Xiaoming Sun*, ACS Sustainable Chemistry & Engineering, 2021, 20, 9, 7120-7129.
8.Heterogeneous single-cluster catalysts (Mn3, Fe3, Co3, and Mo3) supported on nitrogen-doped graphene for robust electrochemical nitrogen reduction, Guokui Zheng, Lei Li, Ziqi Tian*, Zhang Xingwang*, Liang Chen*, Journal of Energy Chemistry, 2021, 54, 612-619.
9.Transformation from a non-radical to a radical pathway via the amorphization of a Ni(OH)2 catalyst as a peroxymonosulfate activator for the ultrafast degradation of organic pollutants, Wang, Hui ; Xu, Wenwen; Chen, Xu ; Yang, Qihao; Shen, Cai; Zhang, Baoshan; Lin, Yichao; Sun, Jian; Zhang, Linjuan*; Zhang, Qiuju*; Lu, Zhiyi*; Chen, Liang, Nanoscale, 2021, 16, 13, 7700-7708.
10. Study on the strontium segregation behavior of lanthanum strontium cobalt ferrite electrode under compression, Jun Yang, Lu Chen, Dongmin Cai, Hua Zhang, Jianxin Wang, Wanbing Guan*, International Journal of Hydrogen Energy, 2021, 46, 9730-9740.
11.Study on the long-term discharge and redox stability of symmetric flat-tube solid oxide fuel cells, Jun Yang, Zhiwen Zou, Hua Zhang, Xiaohui Chang, Wu Liu, Jingxiang Xu, Zhenjun Jiao, Jianxin Wang, Wanbing Guan*, International Journal of Hydrogen Energy. 2021, 46, 9741-9748.
12.Sodium, Silver and Lithium-Ion Conducting beta ''-Alumina plus YSZ Composites, Ionic Conductivity and Stability, Liangzhu Zhu, Anil V. Virkar, Crystals. 2021, 11, 293-293.
13.Electronic modulation by N incorporation boosts the electrocatalytic performance of urchin-like Ni5P4 hollow microspheres for hydrogen evolution, Guangyao Zhou, Yaru Ma, Xiaomei Wu, Yingzi Lin, Huan Pang, Mingyi Zhang, Lin Xu, Ziqi Tian*, Yawen Tang*, Chemical Engineering Journal. 2020, 402.
14.Visible/infrared light-driven high-efficiency CO2 conversion into ethane based on a B-Co synergistic catalyst, Lei Li, Haoran Guo, Ge Yao, Chenhui Hu, Chunhong Liu, Ziqi Tian, Baihai Li, Qiuju Zhang, Liang Chen, Journal of Materials Chemistry A. 2020, 8, 22327-22334.
15.Integrating PtNi nanoparticles on NiFe layered double hydroxide nanosheets as a bifunctional catalyst for hybrid sodium-air batteries, Xueqing Yu, Yao Kang, Shuo Wang, Kwan San Hui, Kwun Nam Hui, Huajun Zhao, Jianding Li, Bo Li, Jincheng Xu, Liang Chen, Huaiyu Shao, Journal of Materials Chemistry A. 2020, 8, 16355-16365.
16.Atomically dispersed Lewis acid sites boost 2-electron oxygen reduction activity of carbon-based catalysts, Qihao Yang, Wenwen Xu, Shun Gong, Guokui Zheng, Ziqi Tian, Yujie Wen, Luming Peng, Linjuan Zhang, Zhiyi Lu, Liang Chen*, Nature Communications. 2020, 11.
17.Ammonia Thermal Treatment toward Topological Defects in Porous Carbon for Enhanced Carbon Dioxide Electroreduction, Yan Dong, Qiuju Zhang, Ziqi Tian, Boran Li, Wensheng Yan, Shuo Wang, Kemin Jiang, Jianwei Su, Colin W. Oloman, Elod L. Gyenge, Ruixiang Ge, Zhiyi Lu, Xiulei Ji, Liang Chen, Advanced Materials. 2020, 32.
18.Facile and green template-free synthesis of morphology-controllable Co3O4 catalysts for CO oxidation, Jiaqin Liu, Chen Zhou, Wenzhe Yue, Bo Yan, Yichao Lin, Aisheng Huang, Chemical Physics Letters. 2020, 756.
19.Double Atom Catalysts: Heteronuclear Transition Metal Dimer Anchored on Nitrogen-Doped Graphene as Superior Electrocatalyst for Nitrogen Reduction Reaction, Guokui Zheng, Lei Li, Shaoyun Hao, Xingwang Zhang, Ziqi Tian*, Liang Chen*, Advanced Theory and Simulations. 2020, 3.
20.Synthesis and Electrochemical Characterization of Lithium Carboxylate 2D Compounds as High-Performance Anodes for Li-Ion Batteries, Haitao Zhang, Yichao Lin, Liang Chen*, Deyu Wang, Hefeng Hu, Cai Shen*, Chemelectrochem. 2020, 7, 306-313.
21.Recent Advances in Metal-Organic Frameworks and Their Derived Materials for Electrocatalytic Water Splitting, Heng Zhang, Jianwei Su, Kunyu Zhao, Liang Chen*, Chemelectrochem. 2020, 7, 1805-1824.
22.A Co-Doped Nanorod-like RuO2 Electrocatalyst with Abundant Oxygen Vacancies for Acidic Water Oxidation, Yuanyuan Tian, Shuo Wang, Ever Velasco, Yueping Yang, Lujie Cao, Linjuan Zhang, Xing Li, Yichao Lin*, Qiuju Zhang*, Liang Chen*, Iscience. 2020, 23.
23.Synthesis of well-shaped and high-crystalline Ce-based metal organic framework for CO2/CH4 separation, Junjie Zhou, Hao Liu, Yichao Lin, Chen Zhou*, Aisheng Huang*, Microporous and Mesoporous Materials. 2020, 302.
24.Recent Progress in Low Pt Content Electrocatalysts for Hydrogen Evolution Reaction, Zheng Li, Ruixiang Ge, Jianwei Su*, Liang Chen*, Advanced Materials Interfaces. 2020, 7, 2000396.
25.Mg-Doping improves the performance of Ru-based electrocatalysts for the acidicoxygen evolution reaction, Li Zheng, Wang Shuo, Tian Yuanyuan, Li Baihai, Liu Zhaomin*, Zhang Qiuju*, Lin Yichao*, Chen Liang, Chemical Communications, 2020, 56, 1749-1752.
26.A-site deficient/excessive effects of LaMnO3 perovskite as bifunctional oxygen catalyst for zinc-air batteries, He Miao*, Xuyang Wu, Bin Chen, Qin Wang, Fu Wang, Jiatang Wang, Chunfei Zhang, Houcheng Zhang, Jinliang Yuan*, Qiuju Zhang*, Electrochimica Acta. 2020, 333, 135566.
27.Highly efficient N2 fixation catalysts: transition-metal carbides M2C (MXenes), Shuo Wang, Bo Li, Lei Li, Ziqi Tian, Qiuju Zhang*, Liang Chen*, Xiao Cheng Zeng*, Nanoscale. 2020, 12, 538-547.
28.Synergistic effects of heteroatom-decorated MXene catalysts for CO reduction reactions, Lei Li, Baihai Li, Haoran Guo, Yanle Li, Chenghua Sun*, Ziqi Tian*, Liang Chen*, Nanoscale. 2020, 12, 15880-15887.
29.Transition metal based heterogeneous electrocatalysts for the oxygen evolution reaction at near-neutral pH, Yan Dong, Colin W. Oloman, Elod L. Gyenge, Jianwei Su*, Liang Chen*, Nanoscale. 2020, 12, 9924-9934.
30.Mechanisms of performance degradation induced by thermal cycling in solid oxide fuel cell stacks with flat-tube anode-supported cells based on double-sided cathodes, Wanbing Guan, Zhiguang Du, Jianxin Wang, Long Jiang, Jun Yang, Xiao-Dong Zhou*, International Journal of Hydrogen Energy. 2020, 45, 19840-19846.
31.Durability of direct internal reforming of methanol as fuel for solid oxide fuel cell with double-sided cathodes, Yanlei Ru, Junkang Sang, Changrong Xia, Wen-Cheng J. Wei, Wanbing Guan*, International Journal of Hydrogen Energy. 2020, 45, 7069-7076.
32.Thermal Stress Analysis of Solid Oxide Fuel Cell with Z-type and Serpentine-Type Channels Considering Pressure Drop, Congying Jiang, Yuchen Gu, Wanbing Guan, Meng Ni, Junkang Sang, Zheng Zhong, Subhash C. Singhal, Journal of the Electrochemical Society. 2020, 167.
33.Long-term stability of carbon dioxide electrolysis in a large-scale flat-tube solid oxide electrolysis cell based on double-sided air electrodes, Lianmei Lu, Wu Liu, Jianxin Wang, Yudong Wang, Changrong Xia, Xiao-Dong Zhou, Ming Chen, Wanbing Guan*, Applied Energy. 2020, 259.
34.3D thermo-electro-chemo-mechanical coupled modeling of solid oxide fuel cell with double-sided cathodes, Congying Jiang, Yuchen Gu, Wanbing Guan*, Jiahong Zheng, Meng Ni, Zheng Zhong*, International Journal of Hydrogen Energy. 2020, 45, 904-915.
35.Durability of direct internal reforming of methanol as fuel for solid oxide fuel cell with double-sided cathodes, Yanlei Ru, Junkang Sang, Changrong Xia, Wen-Cheng J. Wei, Wanbing Guan*, International Journal of Hydrogen Energy. 2020, 45, 7069-7076.
36.Structure evaluation of anode-supported planar solid oxide fuel cells based on single/double-sided electrolyte(s) under redox conditions, Wu Liu, Jiahong Zheng, Yudong Wang, Congying Jiang, Dongfeng Li, Zheng Zhong, Qijie Zhai, Xiaodong Zhou, Wanbing Guan*, International Journal of Applied Ceramic Technology. 2020, 17, 1314-1321.
37.Towards continuous ammonia electro-oxidation reaction on Pt catalysts with weakened adsorption of atomic nitrogen, Yuanhui Wang, Zehui Yang, Jun Yang, Jingxiang Xu, Yaoping Xie, Jieyu Chen, Minghui Yang, Jianxin Wang, Wanbing Guan*, Hiroki Muroyama, Toshiaki Matsui, Koichi Eguchi, International Journal of Hydrogen Energy. 2020, 45, 21816-21824.
38.Efficient and durable ammonia power generation by symmetric flat-tube solid oxide fuel cells, Yuanhui Wang, Yuchen Gu, Hua Zhang, Jun Yang, Jianxin Wang, Wanbing Guan*, Jieyu Chen, Bo Chi, Lichao Jia, Hiroki Muroyama, Toshiaki Matsui, Koichi Eguchi, Zheng Zhong*, Applied Energy. 2020, 270.
39.Low-Temperature Ammonia Decomposition Catalysts for Direct Ammonia Solid Oxide Fuel Cells, Yuanhui Wang, Jun Yang, Jianxin Wang, Wanbing Guan*, Bo Chi, Lichao Jia, Jieyu Chen, Hiroki Muroyama, Toshiaki Matsui, Koichi Eguchi, Journal of the Electrochemical Society. 2020, 167.
40.Densification and electrical conductivity of Fe and Mn-doped Ce0.83Sm0.085Nd0.085O2-& by solid-liquid method, Dingbang Jiang, Jianxin Wang, Yu Su, Xiaohui Chang, Baohua Cao, Ming Chen, Qin Wang, Wanbing Guan*, Jun Yang*, International Journal of Applied Ceramic Technology. 2020, 17, 2716-2724.
41.Synthesis and characterization of Li7La3Zr2O12 via a novel solid-liquid route, Daoguang Zheng, Jianfeng Zhang*, Qin Wang, Xingxing Pan, Jianxin Wang*, Wanbing Guan, Jun Yang, Solid State Ionics. 2020, 345, 115179.
42.基于对称双阴极结构固体氧化物燃料电池乙醇燃料直接内重整的电化学性能研究, 汝艳雷 ，王建新，官万兵*, 硅酸盐学报, 2020, 10.14062/j.issn.0454-5648.20190371.
43.基于电-化-热耦合理论对称双阴极固体氧化物燃料电池堆的电流与温度场数值模拟, 俞成荣, 朱建国*, 蒋聪盈, 谷宇晨, 周晔欣, 李卓斌, 邬荣敏, 仲政, 官万兵*, 电化学, 2020,26,6, 789-796.
44.基于对称双阴极结构固体氧化物燃料电池的快速热稳定性, 杜志广, 张华, 蒋龙*, 邬荣敏, 卢连妹, 李卓斌, 王建新, 官万兵*, 硅酸盐学报, 2020, 48, 3, 423-427.
45.Common-Ion Effect Triggered Highly Sustained Seawater Electrolysis with Additional NaCl Production, Li Pengsong, Wang Shiyuan, Samo Imran Ahmed, Zhang Xingheng, Wang Zhaolei, Wang Cheng, Li Yang, Du Yiyun, Zhong Yang, Cheng Congtian, Xu Wenwen, Liu Xijun, Kuang Yun Lu Zhiyi, Sun Xiaoming, Research, 2020, 2872141.
46.Recent Progress on Carbonaceous Material Engineering for Electrochemical Hydrogen Peroxide Generation, Baoshan Zhang, Wenwen Xu, Zhiyi Lu*, Sun Jie. Transactions of Tianjin University, 2020, 26, 188-196.
47.Fabrication of Ir-CoOx@mesoporous SiO2 Nanoreactors for Selective Hydrogenation of Substituted Nitroaromatics, Shujian Wang, Chunzheng Wu, Hongbo Yu, Tong Li, Xuedong Yan, Bo Yan, Hongfeng Yin, ACS Applied Materials & Interfaces. 2020, 12, 9966-9976.
48.One-pot synthesis of Au-Fe2O3@SiO2 core-shell nanoreactors for CO oxidation, Hongbo Yu*, Zhengtong Guo, Chunzheng Wu, Shujian Wang, Bin Li, Xuedong Yan, Bo Yan, Hongfeng Yin*, New Journal of Chemistry. 2020, 44, ,15, 5661-5665.
49.Controlled Synthesis of Manganese Oxide Nanoparticles Encaged in Hollow Mesoporous Silica Nanoreactors and Their Enhanced Dye Degradation Activity, Jinxia Wei, Kaijie Li, Hongbo Yu, Hongfeng Yin, Martien A. Cohen Stuart, Junyou Wang, Shenghu Zhou, Acs Omega. 2020, 5, 6852-6861.
50.Coordination-Enhanced Synthesis for Hollow Mesoporous Silica Nanoreactors, Kaijie Li, Caoping Yang, Hongbo Yu, Tao Xiao, Wenjun Guan, Peng Ding, Hongfeng Yin, Martien Abraham Cohen Stuart, Junyou Wang, Shenghu Zhou, Chemistry of Materials. 2020, 32, 2086-2096.
51.Engineering oxygen vacancies by one-step growth of distributed homojunctions to enhance charge separation for efficient photoelectrochemical water splitting, Zizai Ma, Huilin Hou, Kai Song, Zhi Fang, Lin Wang, Fengmei Gao, Weiyou Yang, Bin Tang, Yongbo Kuang, Chemical Engineering Journal. 2020, 379.
52.Stable and durable laser-induced graphene patterns embedded in polymer substrates, Lijun Cao, Shuairu Zhu, Baohai Pan, Xinyan Dai, Weiwei Zhao, Yuan Liu, Weiping Xie, Yongbo Kuang, Xiaoqing Liu, Carbon. 2020, 163, 85-94.
53.Better Charge Separation in CuO Nanowire Array Photocathodes: Micro-/Nanostructure Regulation for Photoelectrochemical Reaction, Yufeng Cao, Deyu Liu, Xin Ni, Xiangrui Meng, Yang Zhou, Zhenfan Sun, Yongbo Kuang, Acs Applied Energy Materials. 2020, 3, 6334-6343.
54.Structural limiting factors of mixed-valent tin oxides in photoelectrochemical application: A comparative exploration, Yalong Zou, Deyu Liu, Xiangrui Meng, Qitao Liu, Yang Zhou, Jianming Li, Zhiying Zhao, Ding Chen, Yongbo Kuang, Journal of Energy Chemistry. 2021, 56, 504-511.
55.Fabrication and Modification of Ferrite Photocathodes for Photoelectrochemical Water Splitting, Xin Ni, Yang Zhou, Ruiqin Tan, Yongbo Kuang, Progress in Chemistry. 2020, 32, 1515-1534.
56.Phase-selective synthesis of self-supported RuP films for efficient hydrogen evolution electrocatalysis in alkaline media, Ruixiang Ge, Shuo Wang, Jianwei Su, Yan Dong, Yichao Lin, Qiuju Zhang, Liang Chen, Nanoscale. 2018, 10, 13930-13935.
57.High magnetoresistance in ultra-thin two-dimensional Cr-based MXenes, Jianhui Yang, Shaozheng Zhang, Anping Wang, Ruining Wang, Chuan-Kui Wang, Guang-Ping Zhang, Liang Chen, Nanoscale. 2018, 10, 19492-19497.
58.Insights into High Conductivity of the Two-Dimensional Iodine-Oxidized sp(2)-c-COF, Qiuju Zhang, Mingzhi Dai, Hezhu Shao, Ziqi Tian, Yichao Lin, Liang Chen, Xiao Cheng Zeng, Acs Applied Materials & Interfaces. 2018, 10, 43595-43602.
59.Recent progress in single-atom electrocatalysts: concept, synthesis, and applications in clean energy conversion, Jianwei Su, Ruixiang Ge, Yan Dong, Fei Hao, Liang Chen, Journal of Materials Chemistry A. 2018, 6, 14025-14042.
60.A platinum oxide decorated amorphous cobalt oxide hydroxide nanosheet array towards alkaline hydrogen evolution, Ziqiang Wang, Xiang Ren, Xifeng Shi, Abdullah M. Asiri, Liang Wang, Xiaonian Li, Xuping Sun, Qiuju Zhang, Hongjing Wang, Journal of Materials Chemistry A. 2018, 6, 3864-3868.
61.High-Performance Electrohydrogenation of N2 to NH3 Catalyzed by Multishelled Hollow Cr2O3 Microspheres under Ambient Conditions, Ya Zhang, Weibin Qiu, Yongjun Ma, Yonglan Luo, Ziqi Tian, Guanwei Cui, Fenyu Xie, Liang Chen*, Li, Tingshuai*, Xuping Sun*, ACS Catalysis, 2018, 8, 8540-8544.
62.Boosted Electrocatalytic N2 Reduction to NH3 by Defect-Rich MoS2 Nanoflower, Xianghong Li, Tingshuai Li, Yongjun Ma, Qin Wei, Weibin Qiu, Haoran Guo, Xifeng Shi, Peng Zhang, Abdullah M. Asiri, Liang Chen*, Bo Tang*, Xuping Sun*, Advanced Energy Materials. 2018, 8.
63.Assembling Ultrasmall Copper-Doped Ruthenium Oxide Nanocrystals into Hollow Porous Polyhedra: Highly Robust Electrocatalysts for Oxygen Evolution in Acidic Media, Jianwei Su, Ruixiang Ge, Kemin Jiang, Yan Dong, Fei Hao, Ziqi Tian*, Guoxin Chen, Liang Chen*, Advanced Materials. 2018, 30.
64.Electrochemical Ammonia Synthesis via Nitrogen Reduction Reaction on a MoS2 Catalyst: Theoretical and Experimental Studies, Ling Zhang, Xuqiang Ji, Xiang Ren, Yongjun Ma, Xifeng Shi, Ziqi Tian, Abdullah M. Asiri, Liang Chen*, Bo Tang*, Xuping Sun*, Advanced Materials. 2018, 30.
65.Recent Progress in the Theoretical Investigation of Electrocatalytic Reduction of CO2, Ziqi Tian, Chad Priest, Liang Chen, Advanced Theory and Simulations. 2018, 1.
66.Nonprecious Nanoalloys Embedded in N-Enriched Mesoporous Carbons Derived from a Dual-MOF as Highly Active Catalyst towards Oxygen Reduction Reaction, Jiaping He, Tianyuan Gao, Tengyao Jiang, Bin Mu, Yange Suo, Zhiguo Zhang, Jianwei Su, Chemistryselect. 2018, 3, 7913-7920.
67.Post-Synthesized Method on Amine-Functionalized MOF Membrane for CO2/CH4 Separation, Anshan Xiao, Lujie Cao, Xiangbo Li, Ying Li, Yichao Lin, Chemistryselect. 2018, 3, 9499-9503.
68.Stability and electronic properties of sulfur terminated two-dimensional early transition metal carbides and nitrides (MXene), Jianhui Yang, Anping Wang, Shaozheng Zhang, Helan Wu, Liang Chen, Computational Materials Science. 2018, 153, 303-308.
69.Surface Modifications of Ti2CO2 for Obtaining High Hydrogen Evolution Reaction Activity and Conductivity: A Computational Approach, Shuo Wang, Liang Chen, Yang Wu*, Qiuju Zhang*, ChemPhysChem. 2018, 19, 3380-3387.
70.A molecular-templating strategy to polyamine-incorporated porous organic polymers for unprecedented CO2 capture and separation, Dechuan Zhao, Chunlong Kong*, Hongbin Du, Yonggang Yan, Zhiyong U. Wang, Hai-Long Jiang, Liang Chen*, Science China-Materials. 2019, 62, 448-454.
71.Electrochemical N2 fixation to NH3 under ambient conditions: Mo2N nanorod as a highly efficient and selective catalyst, Ren Xiang, Gui Guanwei, Chen Liang, Xie Fengyu, Wei Qin*, Sun Xuping*, Tian Ziqi*, Chemical Communications, 2018, 53, 61, 8474-8477
72.Ultrafine PtO2 nanoparticles coupled with a Co(OH)F nanowire array for enhanced hydrogen evolution, Ziqiang Wang, Zhiang Liu, Gu Du, Abdullah M. Asiri, Liang Wang, Xiaonian Li, Hongjing Wang*, Xuping Sun*, Liang Chen, Qiuju Zhang*, Chemical Communications. 2018, 54, 810-813.
73.Ultrasmall Ru2P nanoparticles on graphene: a highly efficient hydrogen evolution reaction electrocatalyst in both acidic and alkaline media, Liu Ting Ting, Wang Shuo, Zhang Qiuiju, Hu, Weihua*, Li, Chang Ming, Chen Liang*, Chemical Communications, 2018, 54, 3343-3346.
74.Quantitative assessment of anode contribution to cell degradation under various polarization conditions using industrial size planar solid oxide fuel cells, Rong Yu, Wanbing Guan*, Feng Wang, Feng Han, International Journal of Hydrogen Energy. 2018, 43, 2429-2435.
75.A Generic Method for Preparing Hollow Mesoporous Silica Catalytic Nanoreactors with Metal Oxide Nanoparticles inside Their Cavities, Kaijie Li, Jinxia Wei, Hongbo Yu, Pengyao Xu, Jiahua Wang, Hongfeng Yin, Martien A. Cohen Stuart, Junyou Wang, Shenghu Zhou*, Angewandte Chemie-International Edition. 2018, 57, 16458-16463.
76.Pd Doped La0.1Sr0.9TiO3 as High-Temperature Water-Gas Shift Catalysts: In-Situ Formation of Active Pd Phase, Xiaoya Liang, Chunzheng Wu, Xiaolong Yu, Weixin Huang, Hongfeng Yin, Catalysis Letters. 2018, 148, 2830-2838.
77.Ternary nonfullerene polymer solar cells with 12.16% efficiency by introducing one acceptor with cascading energy level and complementary absorption, Jiang Weigang, Yu Runnan, Liu Zhiyang, Peng, Ruixiang, Mi Dongbo, Hong Ling, Wei Qiang, Hou Jianhui*, Kuang Yongbo, Ge Ziyi*, Advanced Materials, 2018, 30,7,1703005.
78.稀薄气氛下中空对称双阴极固体氧化物燃料电池的特性研究,卜瑶，官万兵*，刘武, 王建新, 裴文利*, 杨钧, Huang Kevin, 仲政, 《硅酸盐学报》, 2018, 46, 867-872.
79.Design and Synthesis of Acid-resistant Zeolite T/NaY Composite Membrane for Water/Ethanol Separation, Xiangbo Li, Zhihui Zhou, Liang Chen*, Chunlong Kong*, Hongbin Du, Bulletin of the Korean Chemical Society. 2019, 40, 511-516.
80.Tunable band gap of NeV co-doped Ca:TiO2 (CaTi5O11) for visible-light photocatalysis, Wang Dengxing, Wang Shuo, Li Baihai, Zhang Zhihua*, Zhang Qiuju*, International Journal of Hydrogen energy, 2019, 44, 4716-4723.
81.Fabrication of highly selective organosilica membrane for gas separation by mixing bis(triethoxysilyl)ethane with methyltriethoxysilane, Shaohua Chai, Hongbin Du, Yayun Zhao, Yichao Lin, Chunlong Kong*, Liang Chen*, Separation and Purification Technology. 2019, 222, 162-167.
82.Design of thin and tubular MOFs-polymer mixed matrix membranes for highly selective separation of H2 and CO2, Yayun Zhao, Dechuan Zhao, Chunlong Kong*, Feng Zhou, Tengyao Jiang, Liang Chen*, Separation and Purification Technology. 2019, 220, 197-205.
83.Tuning Ion-Pair Interaction in Cuprous-Based Protic Ionic Liquids for Significantly Improved CO Capture, Yu-Mei Liu, Ziqi Tian, Feng Qu, Yan Zhou, Yong Liu, Duan-Jian Tao, ACS Sustainable Chemistry & Engineering. 2019, 7, 11894-11900.
84.Hexagonal boron nitride nanosheet for effective ambient N-2 fixation to NH3, Ya Zhang, Huitong Du, Yongjun Ma, Lei Ji, Haoran Guo, Ziqi Tian, Hongyu Chen, Hong Huang, Guanwei Cui, Abdullah M. Asiri, Fengli Qu, Liang Chen*, Xuping Sun*, Nano Research. 2019, 12, 919-924.
85.Theoretical Investigation on the Single Transition-Metal Atom-Decorated Defective MoS2 for Electrocatalytic Ammonia Synthesis, Haoran Guo, Lei Li, Xingyong Wang, Ge Yao, Haibo Yu, Ziqi Tian*, Baihai Li*, Liang Chen*, ACS Applied Materials & Interfaces. 2019, 11, 36506-36514.
86.Asymmetric MXene/monolayer transition metal dichalcogenide heterostructures for functional applications, Baihai Li, Haoran Guo, Yunrui Wang, Wenxu Zhang, Qiuju Zhang, Liang Chen, Xiaoli Fan, Wanli Zhang, Yanrong Li, Woon-Ming Lau*, NPJ Computational Materials. 2019, 5.
87.Chromium-ruthenium oxide solid solution electrocatalyst for highly efficient oxygen evolution reaction in acidic media, Yichao Lin, Ziqi Tian, Linjuan Zhang, Jingyuan Ma, Zheng Jiang, Benjamin J. Deibert, Ruixiang Ge, Liang Chen*, Nature Communications. 2019, 10.
88.Rhodium-Catalyzed Expeditious Synthesis of Indenes from Propargyl Alcohols and Organoboronic Acids by Selective 1,4-Rhodium Migration over beta-Oxygen Elimination, Na Liu, Jian Yao, Long Yin, Tao Lu, Ziqi Tian*, Xiaowei Dou*, ACS Catalysis. 2019, 9, 6857-6863.
89.Transitional Metal Catalytic Pyrite Cathode Enables Ultrastable Four-Electron-Based All-Solid-State Lithium Batteries, Hongli Wan, Gaozhan Liu, Yanle Li, Wei Weng, Jean Pierre Mwizerwa, Ziqi Tian*, Liang Chen*, Xiayin Yao*, ACS Nano. 2019, 13, 9551-9560.
90.Metal-support interaction boosted electrocatalysis of ultrasmall iridium nanoparticles supported on nitrogen doped graphene for highly efficient water electrolysis in acidic and alkaline media, Xiuju Wu, Bomin Feng, Wei Li, Yanli Niu, Yanan Yu, Shiyu Lu, Changyin Zhong, Pingying Liu, Ziqi Tian, Liang Chen*, Weihua Hu*, Chang Ming Li*, Nano Energy. 2019, 62, 117-126.
91.Dental Resin Monomer Enables Unique NbO2/Carbon Lithium-Ion Battery Negative Electrode with Exceptional Performance, Qing Ji, Xiangwen Gao, Qiuju Zhang, Liyu Jin, Da Wang, Yonggao Xia, Shanshan Yin, Senlin Xia, Nuri Hohn, Xiuxia Zuo, Xiaoyan Wang, Shuang Xie, Zhuijun Xu, Liujia Ma, Liang Chen, George Z. Chen, Jin Zhu, Binjie Hu, Peter Mueller-Buschbaum, Peter G. Bruce, Ya Jun Cheng*, Advanced Functional Materials. 2019, 29.
92.Regulating the Electronic Structure of CoP Nanosheets by O Incorporation for High-Efficiency Electrochemical Overall Water Splitting, Guangyao Zhou, Meng Li, Yanle Li, Hang Dong, Dongmei Sun, Xien Liu, Lin Xu, Ziqi Tian*, Yawen Tang*, Advanced Functional Materials. 2020, 30.
93.Ultrafine Defective RuO2 Electrocatayst Integrated on Carbon Cloth for Robust Water Oxidation in Acidic Media, Ruixiang Ge, Lei Li, Jianwei Su, Yichao Lin, Ziqi Tian*, Liang Chen*, Advanced Energy Materials. 2019, 9.
94.Fabricating Single-Atom Catalysts from Chelating Metal in Open Frameworks, Yichao Lin, Pingying Liu, Ever Velasco, Ge Yao, Ziqi Tian*, Linjuan Zhang*, Liang Chen*, Advanced Materials. 2019, 31.
95.Reliability of CO2 electrolysis by solid oxide electrolysis cells with a flat tube based on a composite double-sided air electrode, Xiaoxiang Li, Yudong Wang, Wu Liu, Joshua A. Wilson, Jianxin Wang, Chengtian Wang, Jun Yang, Changrong Xia, Xiao Dong Zhou*, Wanbing Guan*, Composites Part B-Engineering. 2019, 166, 549-554.
96.Anode-Supported Planar Solid Oxide Fuel Cells Based on Double-sided Cathodes, Wu Liu, Zhiwen Zou, Fuxing Miao, Xin Li, Jianxin Wang, Jun Yang, Joshua Wilson, Xiaodong Zhou, Zheng Zhong*, Qijie Zhai, Wanbing Guan*, Energy Technology. 2019, 7, 240-244.
97.Carbon Nanotube-Based Non-Precious Metal Electrode Catalysts for Fuel Cells, Water Splitting and Zinc-Air Batteries, Jun Yang, Pandian Ganesan, Akimitsu Ishihara, Naotoshi Nakashima, Chemcatchem. 2019, 11, 5929-5944.
98.Performance and long-term durability of direct-methane flat-tube solid oxide fuel cells with symmetric double-sided cathodes, Hua Zhang, Wu Liu, Yuanhui Wang, Jianxin Wang, Jun Yang, Tongxiang Liang, Congling Yin, Bo Chi, Lichao Jia, Wanbing Guan, International Journal of Hydrogen Energy. 2019, 44, 28947-28957.
99.Wrapping Multiwalled Carbon Nanotubes with Anatase Titanium Oxide for the Electrosynthesis of Glycolic Acid, Jun Yang, Junfang Cheng, Jie Tao, Manabu Higashi, Miho Yamauchi, Naotoshi Nakashima, ACS Applied Nano Materials. 2019, 2, 6360-6367.
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101.Industrial mass production of nanocrystalline Ce0.9Gd0.1O1.95 via a solid-liquid method using gluconic acid, Baohua Cao, Xiaohui Chang, Jianxin Wang, Wanbing Guan, Jun Yang, Qin Wang, Ceramics International. 2019, 45, 20379-20385.
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103.Enhanced Catalytic Hydrogenation Performance of Rh-Co2O3 Heteroaggregate Nanostructures by in Situ Transformation of Rh@Co Core-Shell Nanoparticles, Qiuyang Zhang, Caiyun Xu, Hongfeng Yin*, Shenghu Zhou*, ACS Omega. 2019, 4, 20829-20837.
104.Structural Identification and Enhanced Catalytic Performance of Alumina-Supported Well-Defined Rh-SnO2 Close-Contact Heteroaggragate Nanostructures, Caiyun Xu, Qi Li, Qiuyang Zhang, Kaijie Li, Hongfeng Yin*, Shenghu Zhou*, ACS Applied Nano Materials. 2019, 2, 5086-5095.
105.Controlled Synthesis and Enhanced Catalytic Activity of Well-Defined Close-Contact Pd-ZnO Nanostructures, Qi Li, Hongbo Yu, Kaijie Li, Hongfeng Yin*, Shenghu Zhou*, Langmuir. 2019, 35, 6288-6296.
106.Design of Cu-based intermetallic nanocrystals for enhancing hydrogenation selectivity, Hongbo Yu, Weiqiang Tang, Kaijie Li, Hongfeng Yin*, Shuangliang Zhao*, Shenghu Zhou*, Chemical Engineering Science. 2019, 196, 402-413.
107.Enhanced Catalytic Performance for Hydrogenation of Substituted Nitroaromatics over Ir-Based Bimetallic Nanocatalysts, Hongbo Yu, Weiqiang Tang, Kaijie Li, Shuangliang Zhao, Hongfeng Yin*, Shenghu Zhou*, Acs Applied Materials & Interfaces. 2019, 11, 6958-6969.
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