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Graphene Quantum Dot Hybrids as Efficient Metal-Free Electrocatalyst for the Oxygen Reduction Reaction

机译:石墨烯量子点杂化物作为高效的无金属氧还原反应电催化剂

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摘要

The doping of heteroatoms into graphene quantum dot nanostructures provides an efficient way to tune the electronic structures and make more active sites for electro-catalysis, photovoltaic, or light emitting applications. Other than the modification of chemical composition, novel architecture is very desirable to enrich the research area and provides a wide range of choices for the diverse applications. Herein, we show a novel lotus seedpod surface-like pattern of zero-dimension (OD) seed-like N-GODs of ca.3 nm embedded on the surface of a two-dimension (2D) N-GQD sheet of ca.35 nm. It is demonstrated that different photoluminescence (PL) could be tuned easily, and the novel multidimensional structure displays excellent performance toward oxygen reduction reaction in alkaline solutions. Thus, the fabricated N-GQD hybrids show bright perspective in biomedical imaging, biosensors, and conversion and storage of energy.
机译:将杂原子掺杂到石墨烯量子点纳米结构中提供了一种有效的方法来调节电子结构并为电催化,光伏或发光应用提供更多的活性位。除了改变化学成分外,非常需要新颖的架构来丰富研究领域,并为多种应用提供广泛的选择。在这里,我们展示了一种新型的莲子荚表面状图案,其在约35的二维(2D)N-GQD薄片表面上嵌入了约3 nm的零维(OD)种子状N-GOD。纳米结果表明,可以容易地调节不同的光致发光(PL),并且新颖的多维结构在碱性溶液中表现出优异的抗氧还原反应性能。因此,制造的N-GQD杂化体在生物医学成像,生物传感器以及能量的转换和存储方面显示出广阔的前景。

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