Affiliation:
1. Department of Chemical and Petroleum Engineering University of Calgary 2500 University Drive, NW Calgary Alberta T2N 1N4 Canada
2. School of Chemistry and Chemical Engineering School of Pharmacy Jiangsu University Zhenjiang 212013 P. R. China
3. CNOOC Institute of Chemicals & Advanced Materials (CICM) Beijing 102200 P. R. China
4. Jiangsu Engineering Laboratory for Environment Functional Materials School of Chemistry and Chemical Engineering Huaiyin Normal University Huai'an 223300 P. R. China
5. Institute for Energy Research Jiangsu University Zhenjiang 212013 P. R. China
Abstract
AbstractCyano‐rich g‐C3N4 materials are widely used in various fields of photochemistry due to the very powerful electron‐absorbing ability and electron storage function of cyano, as well as its advantages in improving light absorption, adjusting the energy band structure, increasing the polarization rate and electron density in the structure, active site concentration, and promoting oxygen activation ability. Notwithstanding, there is yet a huge knowledge break in the design, preparation, detection, application, and prospect of cyano‐rich g‐C3N4. Accordingly, an overall review is arranged to substantially comprehend the research progress and position of cyano‐rich g‐C3N4 materials. An overall overview of the current research position in the synthesis, characterization (determination of their location and quantity), application, and reaction mechanism analysis of cyano‐rich g‐C3N4 materials to provide a quantity of novel suggestions for cyano‐modified carbon nitride materials' construction is provided. In view of the prevailing challenges and outlooks of cyano‐rich g‐C3N4 materials, this paper will purify the growth direction of cyano‐rich g‐C3N4, to achieve a more in‐depth exploration and broaden the applications of cyano‐rich g‐C3N4.
Funder
National Natural Science Foundation of China
Subject
Biomaterials,Biotechnology,General Materials Science,General Chemistry
Cited by
16 articles.
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