Shan-Shan Lu
China University of Petroleum
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Publication
Featured researches published by Shan-Shan Lu.
Inorganic chemistry frontiers | 2017
Kai-Li Yan; Jing-Qi Chi; Zi-Zhang Liu; Bin Dong; Shan-Shan Lu; Xiao Shang; Wen-Kun Gao; Yong-Ming Chai; Chenguang Liu
A crucial challenge still remains in the development of efficient and stable electrocatalysts for oxygen evolution reaction (OER) with desirable conductivity, a high surface area and rich oxygen vacancies. Herein, a type of Ag-doped mesoporous NiCoO nanorod with rich oxygen vacancies (NiCoO@Ag40/NF-Ar) for OER is prepared via an electrodeposition-hydrothermal reaction and the subsequent annealing treatment process under an Ar atmosphere. The electrodeposited Ag film is found to direct the uniform growth of the nanowire arrays of NiCo hydroxide precursors compared to the nanoparticles of NiCo hydroxide in the absence of the Ag film. Interestingly, the addition of C2H8N2 (EN) during the electrodeposition of the Ag film and the subsequent calcination under an Ar atmosphere collectively contribute to the formation of mesoporous nanorod structures and rich oxygen vacancies. The calcined NiCoO in air mainly have the Co3O4 phase, implying that it has fewer oxygen vacancies and weak activity for OER. The high surface area and one-dimensional feature of mesoporous nanorods are responsible for the increased exposure of active sites and fast charge transport behavior. Moreover, Ag doping can also improve the conductivity of NiCoO nanorods. NiCoO@Ag40/NF-Ar exhibits a highly efficient activity for OER with a current density of 140 mA cm−2 at an overpotential of 370 mV and a remarkable stability. The suitable Ar annealing treatment coupling Ag films and oxygen vacancies into transition metal oxide precursors may be a facile and promising method for constructing mesoporous nanostructures with rich oxygen vacancies for efficient water oxidation.
International Journal of Hydrogen Energy | 2017
Guan-Qun Han; Xiao Shang; Shan-Shan Lu; Bin Dong; Xiao Li; Yan-Ru Liu; Wen-Hui Hu; Jing-Bin Zeng; Yong-Ming Chai; Chenguang Liu
Journal of Power Sources | 2017
Xiao Shang; Kai-Li Yan; Shan-Shan Lu; Bin Dong; Wen-Kun Gao; Jing-Qi Chi; Zi-Zhang Liu; Yong-Ming Chai; Chenguang Liu
Applied Surface Science | 2017
Xiao Shang; Kai-Li Yan; Zi-Zhang Liu; Shan-Shan Lu; Bin Dong; Jing-Qi Chi; Xiao Li; Yan-Ru Liu; Yong-Ming Chai; Chenguang Liu
Applied Surface Science | 2017
Xiao Shang; Jing-Qi Chi; Shan-Shan Lu; Jian-Xia Gou; Bin Dong; Xiao Li; Yan-Ru Liu; Kai-Li Yan; Yong-Ming Chai; Chenguang Liu
Carbon | 2017
Jing-Qi Chi; Xiao Shang; Shan-Shan Lu; Bin Dong; Zi-Zhang Liu; Kai-Li Yan; Wen-Kun Gao; Yong-Ming Chai; Chenguang Liu
International Journal of Hydrogen Energy | 2017
Xiao Shang; Jing-Qi Chi; Shan-Shan Lu; Bin Dong; Xiao Li; Yan-Ru Liu; Kai-Li Yan; Wen-Kun Gao; Yong-Ming Chai; Chenguang Liu
Materials Letters | 2017
Bin Dong; Wen-Hui Hu; Xin-Yu Zhang; Jue Wang; Shan-Shan Lu; Xiao Li; Xiao Shang; Yan-Ru Liu; Guan-Qun Han; Yong-Ming Chai; Chenguang Liu
Electrochimica Acta | 2017
Xiao Shang; Jing-Qi Chi; Shan-Shan Lu; Bin Dong; Zi-Zhang Liu; Kai-Li Yan; Wen-Kun Gao; Yong-Ming Chai; Chenguang Liu
Materials Chemistry and Physics | 2017
Xiao Shang; Yi Rao; Shan-Shan Lu; Bin Dong; Li-Ming Zhang; Xiao-Hang Liu; Xiao Li; Yan-Ru Liu; Yong-Ming Chai; Chenguang Liu