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日用化学工业 ›› 2021, Vol. 51 ›› Issue (5): 402-407.doi: 10.3969/j.issn.1001-1803.2021.05.005

• 开发与应用 • 上一篇    下一篇

不同烷基链长Janus g-C3N4的乳化性能及光催化应用

郭晓萍(),张昊,高娜,张瑞琴,梁栋(),张巧玲   

  1. 中北大学 化学工程与技术学院,山西 太原 030051
  • 收稿日期:2020-08-05 修回日期:2021-04-14 出版日期:2021-05-22 发布日期:2021-05-21
  • 通讯作者: 梁栋
  • 作者简介:郭晓萍(1992-),硕士研究生,E-mail: gxiao92@foxmail.com
  • 基金资助:
    山西省自然科学基金资助项目(201901D111171);中北大学大学生创新创业训练项目(20210461)

Emulsification performance and photocatalytic application of Janus g-C3N4 with different alkyl chain length

GUO Xiao-ping(),ZHANG Hao,GAO Na,ZHANG Rui-qin,LIANG Dong(),ZHANG Qiao-ling   

  1. School of Chemical Engineering and Technology, North University of China, Taiyuan, Shanxi 030051, China
  • Received:2020-08-05 Revised:2021-04-14 Online:2021-05-22 Published:2021-05-21
  • Contact: Dong LIANG

摘要:

在石蜡-水乳液界面,使用不同烷基链长的溴代烃对纳米石墨相氮化碳(g-C3N4)单侧接枝改性得到了一系列Janus g-C3N4,用XRD、UV-vis、FT-IR、SEM等进行表征,荧光显微镜、接触角测试其乳化性能,苯甲醇光催化氧化为探针反应考察其催化性能。结果表明:用C4、C8、C12和C16改性的Janus g-C3N4中,以C12接枝的Janus催化剂(JCN-12)乳化性能最好、接触角相对较大(75°)且光催化性能最好,在苯甲醇/水(1 mL/1.5 mL)与20 mg催化剂的高浓度乳液中苯甲醇转化率为68%(选择性>99%),反应中超氧自由基(·O-2)起主要作用,其次为·OH和空穴(h+)。该催化剂易分离回收、使用5次性能稳定,亦可拓至其他苄醇氧化。

关键词: 石墨相氮化碳, 光催化, 苯甲醇氧化

Abstract:

At the interface of paraffin-water emulsion, a series of Janus g-C3N4 were prepared via the one-side modification of nano graphite carbon nitride (g-C3N4) using different bromoalkanes. The products were characterized by XRD, UV-vis, FT-IR and SEM. Their emulsification properties were studied by fluorescence microscopy and contact angle test. The photocatalytic oxidation of benzyl alcohol was used as a probe reaction to investigate the catalytic performance. The results showed that, in the case of the alkyl chain lengths of bromoalkanes being C4, C8, C12 and C16, the Janus catalyst grafted with C12 (JCN-12) behaved best in emulsification, contact angle (75°) and photocatalytic performance. In a concentrated emulsion of benzyl alcohol/water (1 mL/1.5 mL), the conversion of benzyl alcohol reached to 68% (selectivity>99%) with the addition of 20 mg catalyst. It was believed that superoxide radicals (·O-2) played a major role in the reaction, being followed by ·OH and hole h+. The Janus catalyst could be applied to the oxidation of other substituted benzyl alcohols. The catalyst was easily separated and recovered, showing stable performance after 5 times of recycles.

Key words: graphite carbon nitride, photocatalysis, benzyl alcohol oxidation

中图分类号: 

  • TQ423