Kemeng Ji
Beijing University of Technology
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Kemeng Ji.
Environmental Science & Technology | 2012
Fang Wang; Hongxing Dai; Jiguang Deng; Guangmei Bai; Kemeng Ji; Yuxi Liu
Nanosized rod-like, wire-like, and tubular α-MnO(2) and flower-like spherical Mn(2)O(3) have been prepared via the hydrothermal method and the CCl(4) solution method, respectively. The physicochemical properties of the materials were characterized using numerous analytical techniques. The catalytic activities of the catalysts were evaluated for toluene oxidation. It is shown that α-MnO(2) nanorods, nanowires, and nanotubes with a surface area of 45-83 m(2)/g were tetragonal in crystal structure, whereas flower-like spherical Mn(2)O(3) with a surface area of 162 m(2)/g was of cubic crystal structure. There were the presence of surface Mn ions in multiple oxidation states (e.g., Mn(3+), Mn(4+), or even Mn(2+)) and the formation of surface oxygen vacancies. The oxygen adspecies concentration and low-temperature reducibility decreased in the order of rod-like α-MnO(2) > tube-like α-MnO(2) > flower-like Mn(2)O(3) > wire-like α-MnO(2), in good agreement with the sequence of the catalytic performance of these samples. The best-performing rod-like α-MnO(2) catalyst could effectively catalyze the total oxidation of toluene at lower temperatures (T(50%) = 210 °C and T(90%) = 225 °C at space velocity = 20,000 mL/(g h)). It is concluded that the excellent catalytic performance of α-MnO(2) nanorods might be associated with the high oxygen adspecies concentration and good low-temperature reducibility. We are sure that such one-dimensional well-defined morphological manganese oxides are promising materials for the catalytic elimination of air pollutants.
Small | 2015
Hamidreza Arandiyan; Hongxing Dai; Kemeng Ji; Hongyu Sun; Yanyan Zhao; Junhua Li
Highly dispersed Pt nanoparticles supported on high-surface-area 3D ordered macroporous (3DOM) Ce0.6 Zr0.3 Y0.1 O2 (CZY) are synthesized via a bubbling cetyltrimethyl ammonium bromide/P123-assisted reduction route. The 1.1 wt% Pt/3DOM CZY catalyst shows supercatalytic activity for methane combustion, which is attributed to a higher oxygen adspecies amount, larger surface area, better low-temperature reducibility, and unique nanovoid-walled 3DOM structure.
Applied Catalysis B-environmental | 2011
Haiyan Jiang; Hongxing Dai; Xue Meng; Kemeng Ji; Lei Zhang; Jiguang Deng
Applied Catalysis B-environmental | 2015
Kemeng Ji; Jiguang Deng; Hongjun Zang; Jiuhui Han; Hamidreza Arandiyan; Hongxing Dai
Catalysis Communications | 2012
Guangmei Bai; Hongxing Dai; Jiguang Deng; Yuxi Liu; Kemeng Ji
Applied Catalysis B-environmental | 2015
Kemeng Ji; Hongxing Dai; Jiguang Deng; Hongjun Zang; Hamidreza Arandiyan; Shaohua Xie; Huanggen Yang
Applied Catalysis A-general | 2012
Fengjuan Shi; Fang Wang; Hongxing Dai; Jianxing Dai; Jiguang Deng; Yuxi Liu; Guangmei Bai; Kemeng Ji; C.T. Au
ACS Catalysis | 2015
Hamidreza Arandiyan; Hongxing Dai; Kemeng Ji; Hongyu Sun; Junhua Li
Journal of Physical Chemistry C | 2014
Hamidreza Arandiyan; Hongxing Dai; Jiguang Deng; Yuan Wang; Hongyu Sun; Shaohua Xie; Bingyang Bai; Yuxi Liu; Kemeng Ji; Junhua Li
Solid State Sciences | 2013
Haiyan Jiang; Hongxing Dai; Jiguang Deng; Yuxi Liu; Lei Zhang; Kemeng Ji