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Drastic Enhancement of Photocatalytic Activities over Phosphoric Acid Protonated Porous g-C3N4 Nanosheets under Visible Light

机译:在可见光下大幅增强磷酸质子化的多孔g-C3N4纳米片的光催化活性。

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摘要

A simple method is developed to fabricate protonated porous graphitic carbon nitride nanosheets (P-PCNNS) by protonation-exfoliation of bulk graphitic carbon nitride (BCN) with phosphoric acid (H3PO4). The H3PO4 treatment not only helps to exfoliate the BCN into 2D ultrathin nanosheets with abundant micro- and mesopores, endowing P-PCNNS with more exposed active catalytic sites and cross-plane diffusion channels to facilitate the mass and charge transport, but also induces the protonation of carbon nitride polymer, leading to the moderate removal of the impurities of carbon species in BCN for the optimization of the aromatic p-conjugated system for better charge separation without changing its chemical structure. As a result, the P-PCNNS show much higher photocatalytic performance for hydrogen evolution and CO2 conversion than bare BCN and graphitic carbon nitride nanosheets.
机译:通过将本体石墨氮化碳(BCN)与磷酸(H3PO4)质子化剥落,开发了一种简单的方法来制造质子化多孔石墨氮化碳纳米片(P-PCNNS)。 H3PO4处理不仅有助于将BCN剥落为具有大量微孔和中孔的2D超薄纳米片,赋予P-PCNNS更多的活性催化位点和横断面扩散通道以促进质量和电荷传输,还可以诱导质子化氮化碳聚合物的表面活性,可适度去除BCN中碳物种的杂质,从而优化芳族p共轭体系,从而在不改变其化学结构的情况下实现更好的电荷分离。结果,与裸露的BCN和石墨氮化碳纳米片相比,P-PCNNS对氢气的释放和CO2转化显示出更高的光催化性能。

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