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SCC Virtual Issue on Electrocatalysis

中国科学化学 中国科学化学 2022-04-29


电催化合辑

Reviews

Mesostructured carbon-based nanocages: an advanced platform for energy chemistry

Qiang Wu, Lijun Yang, Xizhang Wang & Zheng Hu

Sci. China Chem., 2020, 63(5): 665–681

 

Advanced transition metal/nitrogen/carbon-based electrocatalysts for fuel cell applications 

Tang Tang, Liang Ding, Zhe Jiang, Jin-Song Hu & Li-Jun Wan

Sci. China Chem., 2020, 63(11): 1517–1542

 

Local structure engineering for active sites in fuel cell electrocatalysts

Han Cheng, Renjie Gui, Si Liu, Yi Xie & Changzheng Wu

Sci. China Chem., 2020, 63(11): 1543–1556

 

Articles

Raising the capacity of lithium vanadium phosphate via anion and cation co-substitution

Xian-Xiang Zeng, Hui Chen, Gang Guo, Sheng-Yi Li, Jin-Ying Liu, Qiang Ma, Guote Liu, Ya-Xia Yin, Xiong-Wei Wu & Yu-Guo Guo

Sci. China Chem., 2020, 63(2): 203–207

 

Amino-metalloporphyrin polymer derived Fe single atom catalysts for highly efficient oxygen reduction reaction

Qian He, Yuying Meng, Hao Zhang, Ying Zhang, Qingdi Sun, Tao Gan, Huajian Xiao, Xiaohui He & Hongbing Ji

Sci. China Chem., 2020, 63(6): 810–817

 

Electron-transfer enhanced MoO2-Ni heterostructure as a highly efficient pH-universal catalyst for hydrogen evolution

Benzhi Wang, Hexiu Huang, Meilin Huang, Puxuan Yan, Tayirjan Taylor Isimjan & Xiulin Yang

Sci. China Chem., 2020, 63(6): 841–849

 

Hierarchically nanostructured NiO-Co3O4 with rich interface defects for the electro-oxidation of 5-hydroxymethylfurfural

Yuxuan Lu, Chung-Li Dong, Yu-ChengHuang, Yuqin Zou, Yanbo Liu, Yingying Li, Nana Zhang, Wei Chen, Ling Zhou, Hongzhen Lin & Shuangyin Wang

Sci. China Chem.,2020, 63(7): 980–986

 

Promoting selective electroreduction of nitrate to ammonia over electron-deficient Co modulated by Schottky rectifying contact

Yu Yu, Changhong Wang, Yifu Yu, Yuting Wang & Bin Zhang

Sci. China Chem., 2020, 63(10): 1469–1476

 

Orbital-regulated interfacial electronic coupling endows Ni3N with superior catalytic surface for hydrogen evolution reaction

Yanyan Fang, Da Sun, Shuwen Niu, Jinyan Cai, Yipeng Zang, Yishang Wu, Linqin Zhu, Yufang Xie, Yun Liu, Zixuan Zhu, Amirabbas Mosallanezhad, Di Niu, Zheng Lu, Junjie Shi, Xiaojing Liu, Dewei Rao, Gongming Wang & Yitai Qian

Sci. China Chem., 2020, 63(11): 1563–1569

 

Mo2C@3D ultrathin macroporous carbon realizing efficient and stable nitrogen fixation

Zhiwei Fang, Desiree Fernandez, Nana Wang, Zhongchao Bai & Guihua Yu

Sci. China Chem., 2020, 63(11): 1570–1577

 

Interlayerlig and engineering of β-Ni(OH)2 for oxygen evolution reaction

Junying He, Yuqin Zou, Yucheng Huang, Chenhui Li, Yanbo Liu, Ling Zhou, Chung-Li Dong, Xia Lu & Shuangyin Wang

Sci. China Chem., 2020, 63(12): 1684–1693

 

Design of CuInS2 hollow nanostructures toward COelectroreduction

Chaohua He, Sijia Chen, Ran Long, Li Song & Yujie Xiong

Sci. China Chem., 2020, 63(12): 1721–1726

 

Communications

Fluorescence detection of hydroxyl radical generated from oxygen reduction on Fe/N/C catalyst

Li-Na Chen, Wen-Song Yu, Tao Wang, Xiao-Dong Yang, Hui-Juan Yang, Zhi-Xin Chen, Tan Wang, Na Tian, Zhi-You Zhou & Shi-Gang Sun

Sci. China Chem., 2020, 63(2): 198–202

 

Intrinsically high efficiency sodium metal anode

Yifang Zhang, Qiuwei Shi, Yiren Zhong & Hailiang Wang

Sci. China Chem., 2020, 63(11): 1517–1542

 

COelectrolysis at industrial current densities using anion exchange membrane based electrolyzers

Pengfei Wei, Hefei Li, Long Lin, Dunfeng Gao, Xiaomin Zhang, Huimin Gong, Guangyan Qing, Rui Cai, Guoxiong Wang & Xinhe Bao

Sci. China Chem., 2020, 63(12): 1711–1715


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