TY - JOUR
T1 - Nano-/microstructure improved photocatalytic activities of semiconductors
AU - Zhao, Tianyi
AU - Zhao, Yong
AU - Jiang, Lei
PY - 2013/10/13
Y1 - 2013/10/13
N2 - Photocatalysis has emerged as a promising technique owing to its valuable applications in environmental purification. With the demand of building effective photocatalyst materials, semiconductor investigation experienced a developing process from simple chemical modification to complicated morphology design. In this review, the general relationship between morphology structures and photocatalytic properties is mainly discussed. Various nano-/microsized structures from zero- to three-dimensional are discussed, and the photocatalytic efficiency correspon- ding to the structures is analysed. The results showed that simple structures can be easily obtained and can facilitate chemical modification, whereas one- or three-dimensional structures can provide structureenhanced properties such as surface area increase, multiple reflections of UV light, etc. Those principles of structure-related photocatalytic properties will afford basic ideology in designing new photocatalytic materials with more effective catalytic properties.
AB - Photocatalysis has emerged as a promising technique owing to its valuable applications in environmental purification. With the demand of building effective photocatalyst materials, semiconductor investigation experienced a developing process from simple chemical modification to complicated morphology design. In this review, the general relationship between morphology structures and photocatalytic properties is mainly discussed. Various nano-/microsized structures from zero- to three-dimensional are discussed, and the photocatalytic efficiency correspon- ding to the structures is analysed. The results showed that simple structures can be easily obtained and can facilitate chemical modification, whereas one- or three-dimensional structures can provide structureenhanced properties such as surface area increase, multiple reflections of UV light, etc. Those principles of structure-related photocatalytic properties will afford basic ideology in designing new photocatalytic materials with more effective catalytic properties.
KW - Nano-/microstructure
KW - Photocatalysis
KW - Semiconductor
KW - Structure-related properties
UR - https://www.scopus.com/pages/publications/84884833843
U2 - 10.1098/rsta.2012.0303
DO - 10.1098/rsta.2012.0303
M3 - 文献综述
C2 - 24000355
AN - SCOPUS:84884833843
SN - 1364-503X
VL - 371
JO - Philosophical transactions. Series A, Mathematical, physical, and engineering sciences
JF - Philosophical transactions. Series A, Mathematical, physical, and engineering sciences
IS - 2000
M1 - 20120303
ER -