光催化
化学
碱度
水溶液
可见光谱
半导体
光化学
量子效率
降级(电信)
化学工程
光电子学
催化作用
物理化学
材料科学
有机化学
工程类
电信
计算机科学
作者
Shuxin Ouyang,Hua Tong,Naoto Umezawa,Junyu Cao,Peng Li,Yingpu Bi,Yuanjian Zhang,Jinhua Ye
摘要
A strategy of reaction-environment modulation was employed to change the surface property of a semiconductor photocatalyst to enhance its photocatalytic performance. Surface alkalinization induced by a high alkalinity of the solution environment significantly shifted the surface energy band of a SrTiO(3) photocatalyst to a more negative level, supplying a strong potential for H(2)O reduction and consequently promoting the photocatalytic efficiency of H(2) evolution. This mechanism is also applicable for visible-light-sensitive La,Cr-codoped SrTiO(3) photocatalyst, which hence, could achieve a high apparent quantum efficiency of 25.6% for H(2) evolution in CH(3)OH aqueous solution containing 5 M NaOH at an incident wavelength of 425 ± 12 nm.
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