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生态功能高分子材料教育部重点实验室,西北师范大学化学化工学院,兰州 730070
Published:20 October 2021,
Received:28 August 2020,
Revised:26 April 2021,
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Ya-ping ZHANG, Bo-zhen LI, Hai-yan YAN, Yu-feng HE, Rong-min WANG. Advanced in Preparation of g-C3N4 Nanosheets and Its Photocatalytic Activity. [J]. Polymer Bulletin 34(10):11-20(2021)
DOI:
Ya-ping ZHANG, Bo-zhen LI, Hai-yan YAN, Yu-feng HE, Rong-min WANG. Advanced in Preparation of g-C3N4 Nanosheets and Its Photocatalytic Activity. [J]. Polymer Bulletin 34(10):11-20(2021) DOI: 10.14028/j.cnki.1003-3726.2021.10.002.
g-C
3
N
4
因其具有稳定性好、催化性能强、成本低、无毒等优点
成为一种具有广泛应用前景的明星半导体光催化剂。在能源、催化、传感领域的潜在价值不断被开发
而且在化学、材料、物理、生物、环境、能源等领域取得了重要成果。为了提高其量子效率、改善光催化活性
已合成了多种不同形貌与元素掺杂的g-C
并取得了长足进展。本文在对g-C
光催化机理进行介绍的基础上
首先详细总结了g-C
纳米片的合成方法。其次
概述了提高g-C
光催化活性的方法。最后
对g-C
在形貌可控化、工业化生产和修复环境等方面的发展前景进行了展望。
is widely used as a promising star semiconductor photocatalyst because of its good stability
strong catalytic performance
low cost
non-toxic and other advantages. The potential value in the fields of energy
catalysis and sensing has been continuously exploited
and important achievements have been made in the fields of chemistry
materials
physics
biology
environment and energy. In order to improve its quantum efficiency and photocatalytic activity
with different morphologies and doping elements was synthesized and great progress was made. In this paper
based on introducing g-C
photocatalytic mechanism
the methods for the synthesis of g-C
nanosheets were summarized in details. Then
some methods for improving the photocatalytic activity of g-C
were summarized. Finally
the development prospects of g-C
in the aspects of controllable morphology
industrial production and environmental restoration are prospected.
g-C3N4 纳米片合成改性光催化活性
g-C3N4 NanosheetsSynthesisModificationPhotocatalytic activity
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