宿艳

个人信息Personal Information

硕士生导师

性别:女

毕业院校:大连理工大学

学位:博士

所在单位:化学学院

学科:分析化学. 无机化学

办公地点:化学楼基础化学实验中心328

联系方式:办公电话:84706313

电子邮箱:susu@dlut.edu.cn

扫描关注

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Decoration of TiO2 nanotube arrays by graphitic-C3N4 quantum dots with improved photoelectrocatalytic performance

点击次数:

论文类型:期刊论文

发表时间:2017-02-01

发表刊物:APPLIED SURFACE SCIENCE

收录刊物:SCIE、EI

卷号:394

页面范围:479-487

ISSN号:0169-4332

关键字:TiO2 nanotube arrays; g-C3N4 quantum dots; Charge separation; Optical absorption; Photoelectrocatalytic performance

摘要:In this paper, we present a novel method to improve the photoelectrocatalytic (PEC) property of TiO2 nanotube arrays (TNTAs) by way of decorating it with visible-light-respond graphitic-C3N4 quantum dots (g-C3N4 QDs). The g-C3N4 QDs/TNTAs heterojunction is successfully prepared using a facile dipping method. The optimal condition of preparing g-C3N4 QDs/TNTAs heterojunction is found as 60 min of dipping duration and 0.2 mg mL(-1) of g-C3N4 QDs dipping solution. The fabricated g-C3N4 QDs/TNTAs heterojunction shows improved PEC activity comparing to TNTAs due to its better separation capability of photo-generated charges and wider optical absorption. And the photocurrent generated by the optimal g-C3N4 QDs/TNTAs photoanode is 4.3 times than that of pristine TNTAs. Besides, the g-C3N4 QDs/TNTAs heterojunction also exhibits superior PEC activities in degradation of phenol. 98.6% of phenol is successfully degraded in 120 min and the pseudo-first-order kinetic constant of phenol degradation is 4.9 times as great as that of pristine TNTAs. This work indicates that the g-C3N4 QDs/TNTAs heterojunction is expected to be a promising nanomaterial for pollutant degradation and further application in solar energy conversion. (C) 2016 Elsevier B.V. All rights reserved.