Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Chu Min Xiao"'
Autor:
Wei Lin Feng, Zhi Gang Wei, Jun Hui Zuo, Chu Min Xiao, Guang Hui Hu, Zhan Chang Pan, Ying Hao Xie
Publikováno v:
Advanced Materials Research. :176-180
In this paper, nano TiO2 loaded on activated carbon fiber(ACF) was prepared by hydrothermal method as TiO2/ACF photocatalytic.The material crystal structure, the superficial appearance of catalyst, were analyzed and measured by XRD and SEM images.Mor
Autor:
Guang Hui Hu, Jian Feng Deng, Zhi Gang Wei, Zhu Liang Li, Xinlong Tian, Zhan Chang Pan, Chu Min Xiao, Shou Kun Wu
Publikováno v:
Advanced Materials Research. :1641-1644
Al–Sn co-doped ZnO thin films were fabricated onto quartz glass substrates by the sol-gel method. The surface morphology, electrical and optical properties at different post-deposition heating temperatures were investigated. The grains of preferred
Autor:
Guang Hui Hu, Zhen Jun Cheng, Zhan Chang Pan, Shu Guang Xie, Xinlong Tian, Zhi Gang Wei, Chu Min Xiao, Hai Xia Zeng
Publikováno v:
Advanced Materials Research. :1361-1364
Ni-P alloy electrode was prepared by electroless plating on the Cu-Zn substrate. The surface morphology and textural properties of electrode were characterized by Scanning electron microscope(SEM), Energy dispersive spectroscopy(EDS) and X-ray diffra
Autor:
Guang Hui Hu, Jian Feng Deng, Zhi Gang Wei, Zhu Liang Li, Chu Min Xiao, Hui Chong Zhang, Zhan Chang Pan, Shi Rong Chen
Publikováno v:
Advanced Materials Research. :1802-1805
As a simple and useful approach, vapor-phase photografting acrylic acid was used to modify the surface of PET films. Catalyst of silver nanoparticles was distributed on the photografting PET films equably after reducing by ascorbic acid. Topography o
Publikováno v:
Advanced Materials Research. :2219-2222
In this paper, TiO2crystallines doped with transition metal ions have been prepared by sol-gel method. The UV-visible spectra indicated that the doping with transition metal ions (especially Cu2+, Mn2+and Cr3+ions) could effectively improve the absor