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A Standard and Reliable Method to Fabricate Two-Dimensional Nanoelectronics
Published on: August 28, 2018
Hierarchical Design of 2D Carbon Nitride and Derivatives for Next-Generation Energy Conversion and Storage
Yanmei Zheng1, Ziwei Hang1, Jianghong Ouyang1
1National Key Laboratory for the Development and Utilization of Forest Food Resources, Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, Nanjing Forestry University, Longpan Road 159, Nanjing, 210037, China.
Abstract:
Two-dimensional graphitic carbon nitride (2D g-C3N4) has attracted extensive attention in energy conversion and storage due to its unique visible-light response, tailorable band gap, favorable electrical properties, facile functionalization, and high physicochemical stability. However, there are few reviews on the comprehensive applications of 2D g-C3N4 and its derivatives for energy conversion and storage. To address this gap, this review provides an in-depth examination of the structural features and physicochemical properties of g-C3N4. Subsequently, a critical analysis of the synthesis and modification strategies of 2D g-C3N4 and its derivatives is presented. The study investigates the rational design and applications of these materials in various energy conversion and storage systems, including catalysis, batteries, supercapacitors, solar cells, fuel cells, and biomass valorization. Finally, this review discusses the existing challenges and future prospects of employing 2D g-C3N4 in energy conversion and storage, offering valuable insights for developing next-generation energy technologies.

