Luo Ruixian
Beijing University of Chemical Technology
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Featured researches published by Luo Ruixian.
Science China-technological Sciences | 2007
Bai Shouli; Tong Zhangfa; Li Dianqing; Huang Xiao-wei; Luo Ruixian; Chen Aifan
The nanocomplex oxides of Sn-In and Sn-In-Ti were prepared by controlled co-precipitation method as sensing materials of semiconductor gas sensors for detection of CO, CH4 and NO2. Through manipulating the Sn/In cation ratio, metal salt total concentration, precipitation pH value and aging time, the nanocrystalline powders were successfully derived with chemical homogeneity and superior thermal stability, compared with the single component oxides. The particle size and morphology, surface area, and thermal and phase stabilities were characterized using TEM, TG-DTA, BET and XRD. The sensing tests showed that the Sn-In composites exhibit high sensitivity and selectivity for CO and NO2. The introduction of TiO2 enhanced CH4 sensitivity and selectivity, particularly, additives of Pd and Al2O3 as a dopant and surface modification greatly enhanced the sensing properties. The sensitivity depended on the composition of composites, calcination temperature and operating temperature. The optimal values were (25%In2O3-75%SnO2)-20%TiO2 for temary composite, 600 and 300°C, respectively. Temperature-programmed desorption (TPD) studies were employed to explain the gas adsorption behavior displayed by the surface of nanocomposites and X-ray photoelectron spectroscopic (XPS) analysis was used to confirm the electronic interactions existing between oxide components. The sensing mechanism of the nanocomposites was attributed to chemical and electronic synergistic effects.
Progress in Natural Science | 2005
Ma Lijing; Yang Dong; Li Yingxia; Bai Shouli; Chen Aifan; Luo Ruixian
Abstract The catalysts of copper oxide supported on cerium dioxide were prepared by different methods for methane catalytic combustion. The effects of copper content in the catalysts and calcination temperatures of the catalysts on the catalytic activity are investigated. Results show that the complex oxide catalyst exhibits high catalytic activity for methane combustion due to the synergistic effect of CuO and CeO2. The catalyst prepared by impregnation is more active than that prepared by controlled coprecipitation even if CuO content is the same. When W (CuO)<13%, the light-off temperature and full conversion temperature for the CH4 reaction decrease with the increasing of CuO content in the catalysts. However, when the copper content is above 13%, the excess CuO has a negative effect on the catalytic activity owing to the formation of bulk CuO particles. A proper calcination temperature of 650°C can lead to a high dispersion of CuO and accordingly can enhance the catalytic activity of the composities....
Sensors and Actuators B-chemical | 2008
Bai Shouli; Chen Liangyuan; Yang Pengcheng; Luo Ruixian; Chen Aifan; Chung-Chiun Liu
Sensors and Actuators B-chemical | 2011
Bai Shouli; Chen Liangyuan; Hu Jingwei; Li Dianqing; Luo Ruixian; Chen Aifan; Chung-Chiun Liu
Archive | 2013
Bai Shouli; Chen Chao; Li Dianqing; Luo Ruixian; Chen Aifan
Archive | 2014
Bai Shouli; Liu Haiyan; Li Dianqing; Luo Ruixian; Chen Aifan
Sensors and Actuators B-chemical | 2017
Bai Shouli; Zhao Yanhong; Sun Jianhua; Tong Zhangfa; Luo Ruixian; Li Dianqing; Chen Aifan
Sensors and Actuators B-chemical | 2017
Sun Jianhua; Shu Xin; Tian Yanli; Tong Zhangfa; Bai Shouli; Luo Ruixian; Li Dianqing; Liu Chung Chiun
Sensors and Actuators B-chemical | 2017
Sun Jianhua; Shu Xin; Tian Yanli; Tong Zhangfa; Bai Shouli; Luo Ruixian; Li Dianqing; Chen Aifan
Journal of Alloys and Compounds | 2017
Sun Jianhua; Guo Jun; Ye Jingyao; Song Bangjun; Zhang Kewei; Bai Shouli; Luo Ruixian; Li Dianqing; Chen Aifan