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Developing extended visible light responsive polymeric carbon nitrides for photocatalytic and photoelectrocatalytic applications

机译:开发用于光催化和光电催化应用的扩展可见光响应聚合物氮化碳

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Polymeric carbon nitride (CN) has emerged as an attractive material for photocatalysis and photoelectronic devices. However, the synthesis of porous CNs with controlled structural and optical properties remains a challenge, and processable CN precursors are still highly sought after for fabricating homogenous CN layers strongly bound to a given substrate. Here, we report a general method to synthesize highly dispersed porous CN materials that show excellent photocatalytic activity for the hydrogen evolution reaction and good performance as photoanodes in photoelectrochemical cells (PEC): first, supramolecular assemblies of melem and melamine in ethylene glycol and water are prepared using a hydrothermal process. These precursors are then calcined to yield a water-dispersible CN photocatalyst that exhibits beneficial charge separation under illumination, extended visible-light response attributed to carbon doping, and a large number of free amine groups that act as preferential sites for a Pt cocatalyst. The optimized CN exhibits state-of-the-art HER rates up to 23.1 mmol h−1 g−1, with an AQE of 19.2 at 395 nm. This unique synthetic route enables the formation of a homogeneous precursor paste for substrate casting; consequently, the CN photoanode exhibits a low onset potential, a high photocurrent density and good stability after calcination.
机译:聚合氮化碳 (CN) 已成为光催化和光电器件的有吸引力的材料。然而,合成具有可控结构和光学特性的多孔CNs仍然是一个挑战,可加工的CN前驱体仍然备受追捧,用于制造与给定基板紧密结合的均质CN层。在这里,我们报道了一种合成高分散性多孔CN材料的通用方法,该材料在析氢反应中表现出优异的光催化活性,并且在光电化学电池(PEC)中作为光阳极具有良好的性能:首先,使用水热法制备乙二醇和水中的melem和三聚氰胺的超分子组装体。然后将这些前驱体煅烧产生可水分散的CN光催化剂,该光催化剂在光照下表现出有益的电荷分离,碳掺杂导致的可见光响应延长,以及大量游离胺基团作为Pt助催化剂的优先位点。优化后的 CN 表现出最先进的 HER 速率,高达 23.1 mmol h−1 g−1,在 395 nm 处的 AQE 为 19.2%。这种独特的合成路线能够形成用于基板铸造的均匀前驱体浆料;因此,CN光阳极在煅烧后表现出低起始电位、高光电流密度和良好的稳定性。

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