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Phosphorene quantum dots: synthesis, properties and catalytic applications

机译:Phosphorene量子点:合成、性质和催化应用

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摘要

Phosphorene quantum dots (PQDs) belong to a new class of zero-dimensional functional nanostructures with unique physicochemical and surface properties in comparison with few-layer phosphorene and other 2D analogues. Tunable band gap as a function of number of layers, ease of passivation and high carrier mobility of PQDs have attracted considerable attention in catalysis research due to which spectacular progress has been made in PQD research over the last few years. PQDs are now considered as promising catalytic materials for electrocatalytic water splitting and nitrogen reduction, lithium-sulfur batteries, solar light-driven energy devices and biocatalysis, either in pristine form or as an active component for constructing heterostructures with other 2D materials. In the light of these recent advances, it is worthwhile to review and consolidate PQD research in catalytic applications to understand the challenges ahead and suggest possible solutions. In this review, we systematically summarize various synthetic strategies including ultrasonic and electrochemical exfoliation, solvothermal treatment, blender breaking, milling, crushing and pulsed laser irradiation. Furthermore, the physiochemical properties of PQDs are discussed based on both experimental and theoretical perspectives. The potential applications of PQDs in catalysis with special emphasis on photocatalysis (solar light-driven energy devices) and electrocatalysis (oxygen evolution reactions and hydrogen evolution reactions) -are critically discussed along with the present status, challenges and future perspectives
机译:Phosphorene量子点(PQDs)属于一个新的类域的功能纳米材料具有独特的物理化学和表面性质与few-layer相比phosphorene和其他2 d类似物。缺口层数的函数,方便PQDs钝化和高载流子迁移率已经引起了相当大的关注催化研究由于壮观在PQD研究进展最近几年。有前景的催化材料electrocatalytic水分解和氮减少,锂硫电池,太阳能light-driven能源设备和生物催化,以原始形式或作为活性成分构造与其他2 d异质结构材料。值得回顾和巩固PQD研究在催化应用程序理解未来的挑战和建议解决方案。总结各种合成策略包括超声电化学剥离,solvothermal治疗,搅拌机打碎,铣、磨碎和脉冲激光辐照。此外,的理化性质PQDs基于实验和讨论理论观点。PQDs在催化中的应用与特别强调光催化(太阳能light-driven能源设备)和电催化作用(氧气进化进化反应和氢反应)——批判性与讨论现状、挑战和未来视角

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