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Few-Layer Black Phosphorus Nanosheets: A Metal-Free Cocatalyst for Photocatalytic Nitrogen Fixation

机译:少数黑色磷纳米片:用于光催化氮固定的无金属助催化剂

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Exploiting an appropriate strategy to prepare fine crystal quality black phosphorus nanosheet (BPNS) catalyst is a major challenge for its practical application in catalysis. Herein, we address this challenge by developing a rapid electrochemical expansion strategy for scale preparation of fine crystal quality BPNSs from bulk black phosphorus, which was demonstrated to be an active cocatalyst for photocatalytic nitrogen fixation in the presence of CdS as a photocatalyst. The transient photocurrent and charge density studies show that the BPNSs can efficiently accelerate charge separation of CdS, leading to the enhanced photocatalytic activities of BPNS/CdS nanocomposites for nitrogen fixation. The 1.5% BPNS/CdS photocatalyst exhibits the highest photocatalytic activity for nitrogen fixation with an NH3 evolution rate of 57.64 mu mol.L-1.h(-1). This study not only affords a rapid and simple strategy for scale synthesis of fine crystal quality BPNSs but also provides new insights into the design and development of black phosphorus-based materials as low-cost metal-free cocatalysts for photocatalytic nitrogen fixation.
机译:利用适当的策略来制备精细晶体质量黑色磷纳米片(BPNS)催化剂是其在催化作用中的实际应用的主要挑战。在此,我们通过开发来自散装黑磷的细晶质量BPNS的快速电化学膨胀策略来解决这一挑战,这被证明是CDS作为光催化剂存在的光催化氮固定活性助催化剂。瞬态光电流和充电密度研究表明,BPNS可以有效地加速CD的电荷分离,导致BPNS / Cds纳米复合材料的增强的光催化活性用于氮固定。 1.5%BPNS / Cds光催化剂具有最高的光催化活性,用于氮固定率,NH 3进化速率为57.64μmol.L-1.h(-1)。这项研究不仅提供了一种快速和简单的规模合成策略,可为细水晶质量BPNSS提供新的洞察,而是对基于黑色磷的材料的设计和开发,作为用于光催化氮固定的低成本金属助催化剂的设计和开发。

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