【摘 要】
:
As a promising two-dimensional conjugated polymer, graphitic carbon nitride (g-C3N4) has been utilized as a low-cost, robust, metal-free, and visible-light-
【机 构】
:
College of Chemistry, Fuzhou University, Fuzhou 350002, P.R. China
【出 处】
:
The 6th International Conference on Nanoscience and Technolo
论文部分内容阅读
As a promising two-dimensional conjugated polymer, graphitic carbon nitride (g-C3N4) has been utilized as a low-cost, robust, metal-free, and visible-light-active photocatalyst in the field of solar energy conversion. In this talk, the recent advances of g-C3N4 photocatalysis are described. Graphitic carbon nitride polymer is the most stable phase of covalent carbon nitride phases and the facile synthesis of the melon-based carbon nitride substructure from simple liquid precursors and monomers allows easy bulk and interface engineering of carbon nitride materials to achieve better photocatalytic performance via several processing routes and methods, like sol-gel processing, doping, templated synthesis, copolymerization, hot-fluid annealing, and surface heterojunction design. The synthetic methods and modification protocols to tailor the electronic structure, nanostructure, crystal structure and heterostructure of g-C3N4 are mainly illustrated. The application of carbon nitride polymer in selective organic synthesis and CO2 reduction with visible light was also discussed.
其他文献
Two-dimensional multicomponent transition-metal oxide nanosheets are the most promising candidate in energy storage/conversion devices.
In this presentation, we present our recent research advances in preparation and characterization of high quality graphene-like materials, as well as their
Organometallic hybrid perovskites have recently attracted enormous attention for photovoltaic, light emitting and other applications. Combining the advantag
For supported metal catalysts for various reactions, the grain sizes of the active metals and the metal surface areas influence the reaction activity signif
The optical properties of semiconductor nanocrystals have long been used to produce optoelectronic devices with unique capabilities. Recently, methylammoniu
The typical photoanode in dye- and quantum dot- sensitized solar cells is composed of a wide band gap semiconductor, which acts as electron transporter for
Highly fluorescent nanocoils and nanotubes were assembled from elaborately designed asymmetric perylene diimide (PDI) molecules. These nanomaterials exhibit
Although various device structures based on GaSb nanowires have been realized, further performance enhancement is still suffering from uncontrolled radial g
With the diminishing reserve of oil, exploration of efficient utilization of natural gas and coal via synthesis gas (syngas) becomes increasingly important