Carbon Nitride: Physical properties and Applications

Fuente: arXiv
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Main Authors: Kumari, Shilpi, sharma, Soubhagyam, Kumari, Manisha, Singh, Manish Kumar, Prasad, Rakesh K., Lee, Kwang-geol, Singh, Dilip K.
Format: Preprint
Published: 2025
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_version_ 1866915358240145408
author Kumari, Shilpi
sharma, Soubhagyam
Kumari, Manisha
Singh, Manish Kumar
Prasad, Rakesh K.
Lee, Kwang-geol
Singh, Dilip K.
author_facet Kumari, Shilpi
sharma, Soubhagyam
Kumari, Manisha
Singh, Manish Kumar
Prasad, Rakesh K.
Lee, Kwang-geol
Singh, Dilip K.
contents Graphitic carbon nitride has emerged as a versatile, metal-free semiconductor with applications spanning over broad range of domains encompassing energy storage, environmental remediation and sensing. Despite significant progress in recent years, there remains a lack of comprehensive discussion on the graphitic carbon nitride's evolving role in next-generation technologies and the engineering strategies needed to overcome existing challenges. In this review article, the critical assessment of the physicochemical properties of graphitic carbon nitride which holds potential to enable its function across diverse applications has been elucidated. Current advances in doping, heterojunction formation and composite engineering that enhances its catalytic and electronic performance has been summarized. The article also presents future research directions to unlock the full potential of graphitic carbon nitride as a useful material in sustainable and intelligent systems.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20140
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Carbon Nitride: Physical properties and Applications
Kumari, Shilpi
sharma, Soubhagyam
Kumari, Manisha
Singh, Manish Kumar
Prasad, Rakesh K.
Lee, Kwang-geol
Singh, Dilip K.
Materials Science
Graphitic carbon nitride has emerged as a versatile, metal-free semiconductor with applications spanning over broad range of domains encompassing energy storage, environmental remediation and sensing. Despite significant progress in recent years, there remains a lack of comprehensive discussion on the graphitic carbon nitride's evolving role in next-generation technologies and the engineering strategies needed to overcome existing challenges. In this review article, the critical assessment of the physicochemical properties of graphitic carbon nitride which holds potential to enable its function across diverse applications has been elucidated. Current advances in doping, heterojunction formation and composite engineering that enhances its catalytic and electronic performance has been summarized. The article also presents future research directions to unlock the full potential of graphitic carbon nitride as a useful material in sustainable and intelligent systems.
title Carbon Nitride: Physical properties and Applications
topic Materials Science
url https://arxiv.org/abs/2506.20140