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首页> 外文期刊>ChemSusChem >Synthesis of g-C3N4 Nanosheets by Using a Highly Condensed Lamellar Crystalline Melamine-Cyanuric Acid Supramolecular Complex for Enhanced Solar Hydrogen Generation
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Synthesis of g-C3N4 Nanosheets by Using a Highly Condensed Lamellar Crystalline Melamine-Cyanuric Acid Supramolecular Complex for Enhanced Solar Hydrogen Generation

机译:用高浓缩的层状结晶三聚氰胺 - 氰基 - 氰酸超分子复合物合成G-C3N4纳米片,用于增强太阳能氢气

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摘要

A highly condensed lamellar melamine-cyanuric acid supramolecular (MCS) complex was synthesized in an autoclave at high pressure as a precursor for preparing g-C3N4 nanosheets. Given the distinctive properties of the prepared MCS complex, an efficient g-C3N4 nanosheet photocatalyst can be obtained by heat treatment of this MCS complex under Ar followed by calcination in air at 400 degrees C. The resulting nanosheets with in-plane nanoholes showed an extremely high specific surface area (approximate to 270 m(2) g(-1)) and significantly enhanced light absorption in the visible region. This phenomenon is observed for the first time in carbon nitride nanosheets. The enhanced light absorption results from the sizeable conjugated system of tri-striazine units in the carbon nitride framework, coupled with the structural defects arising from the presence of oxygen-containing groups induced during the synthesis. Consequently, the obtained carbon nitride nanosheets exhibited excellent performance for hydrogen generation under sunlight and especially under visible light. Its quantum efficiency (QE) of 20.9 % at 420 nm is one of the highest reported values for carbon nitride materials. A QE of 3.5 % could be observed even at 590 nm. The integrated QE of this material in the visible region (420-600 nm) is approximately 1 %. To the best of our knowledge this is the highest value compared to all other the carbon nitride nanosheet materials reported previously.
机译:高压作为制备G-C3N4纳米晶片的前体,在高压下在高压釜中合成高度浓缩的层状三聚氰胺 - 氰尿酸超分子(MCS)复合物。鉴于制备的MCS复合物的独特性质,可以通过在AR下的该MCS复合物的热处理中,在400摄氏度下进行空气中的煅烧,获得有效的G-C3N4纳米蛋白光催化剂。与面内纳米孔的所得纳米片显示出极端的高比表面积(近似到270μm(2)g(-1)),并且在可见区域中显着增强光吸收。在氮化碳纳米片中首次观察到这种现象。增强的光吸收来自碳氮化物框架中的三 - striazine单元的大相缀合系统,与合成期间诱导的含氧基团的存在产生的结构缺陷。因此,所得碳氮化物纳米晶片表现出阳光下的氢生成的优异性能,特别是在可见光下。其420nm的量子效率(QE)为20.9%是碳氮化物质的最高报道值之​​一。即使在590nm处,也可以观察到3.5%的QE。可见区域中该材料的集成QE(420-600nm)约为1%。据我们所知,与此前报道的所有其他碳氮化纳米片材料相比,这是最高值。

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