Nitrogen‐rich graphitic carbon nitride (g‐C3N5): Emerging low‐bandgap materials for photocatalysis

Author:

Vuong Hoai‐Thanh1ORCID,Nguyen Duc‐Viet2,Phuong Ly P.34,Minh Phan P. D.34,Ho Bao N.34,Nguyen Hoai A.34

Affiliation:

1. Department of Chemistry and Biochemistry University of California Santa Barbara (UCSB) Santa Barbara California USA

2. School of Chemical Engineering University of Ulsan Ulsan South Korea

3. Faculty of Chemical Engineering Ho Chi Minh City University of Technology (HCMUT) Ho Chi Minh City Vietnam

4. Vietnam National University Ho Chi Minh City (VNU‐HCM), Linh Trung Ward, Thu Duc City Ho Chi Minh City Vietnam

Abstract

AbstractThe bottlenecks in photocatalytic materials primarily center on light absorption capacities and rapid charge recombination. Thus, many gigantic effects have been undertaken by worldwide scientists to address the issues. In this concept, carbon‐based photocatalysts, such as graphene or graphitic carbon nitrides (g‐C3N4), would frequently capture scientific fascination due to their distinct properties in catalytic applications. However, traditional materials would possess the drawbacks mentioned above. In the current era, nitrogen‐rich graphitic carbon nitrides (g‐C3N5) have emerged as a promising star for photocatalytic applications due to the significant enhancements in light absorption properties, which can activate in ultraviolet, visible, and even under near‐infrared irradiations. This review will summarize the recent progress in the fabrication of g‐C3N5 and the photocatalytic application of these based materials by thoroughly investigating current literature studies. Thus, updating the current trend in state‐of‐the‐art materials would motivate researchers to explore the field further.

Publisher

Wiley

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