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Ultrathin Phosphate‐Modulated Co Phthalocyanine/g‐C3N4 Heterojunction Photocatalysts with Single Co–N4 (II) Sites for Efficient O2 Activation

机译:超薄磷酸盐调制CO酞菁/ G-C3N4异质结催化,具有单一CO-N4(II)位点,以有效O2活化

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Realization of solar‐driven aerobic organic transformation under atmospheric?pressure raises the great challenge for efficiently activating O2 by tailored photocatalysts. Guided by theoretical calculation, phosphate groups are used to induce the construction of ultrathin Co phthalocyanine/g‐C3N4 heterojunctions (CoPc/P‐CN, ≈4 nm) via strengthened H‐bonding interfacial connection, achieving an unprecedented 14‐time photoactivity improvement for UV–vis aerobic 2,4‐dichlorophenol degradation compared to bulk CN by promoted activation of O2. It is validated that more ?O2? radicals are produced through the improved photoreduction of O2 by accelerated photoelectron transfer from CN to the ligand of CoPc and then to the abundant single Co–N4 (II) catalytic sites, as endowed by the matched dimension, intimate interface even at the molecular level, and high CoPc dispersion of resulted heterojunctions. Interestingly, CoPc/P‐CN also exhibits outstanding photoactivities in the aerobic oxidation of aromatic alcohols. This work showcases a feasible route to realize efficient photocatalytic O2 activation by exploiting the potential of ultrathin metal phthalocyanine (MPc) assemblies with abundant single‐atom sites. More importantly, a universal facile strategy of H‐bonding‐dominating construction of MPc‐involved heterojunctions is successfully established.
机译:大气下的太阳能驱动的有氧有机转化的实现造成了由量定制的光催化剂有效激活O2的巨大挑战。由理论计算引导,磷酸基团用于通过强化H键合界面连接诱导超薄Co酞菁/ G-C3N4杂核(COPC / P-CN,≈4nm)的构建,实现了前所未有的14次照片的可剥离改善通过促进O 2的激活,与大量CN相比,UV-Vis的2,4-二氯苯酚降解。它经过验证更多?O2?通过从CN到COPC的配体的加速光电子转移通过从CN的加速光电子转移来产生自由基,然后通过匹配的尺寸,甚至在分子水平处赋予丰富的单一CO-N4(II)催化位点,即使在分子水平下赋予富有的单一CO-N4(II)催化位点。和高COPC分散导致的异质结。有趣的是,COPC / P-CN还表现出芳香醇的有氧氧化的突出拍摄性。这项工作展示了通过利用具有丰富单原子位点的超薄金属酞菁(MPC)组件的潜力来实现有效的光催化O2活化的可行途径。更重要的是,成功建立了MPC杂交杂交型H键合型杂交构建的普遍设识策略。

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