Chem. Soc. Rev最新二維材料量子點(diǎn)綜述:Quantum dots from 2D materials
全文24頁(yè),190篇參考文獻(xiàn) (Chem. Soc. Rev., 2016, DOI: 10.1039/C5CS00811E)
Quantum dots derived from two-dimensional materials and their applications for catalysis and energy
作者為 Xuewan Wang, Gengzhi Sun, Nan Li and Peng Chen*
二維材料(如石墨烯、過(guò)渡金屬二硫化物、碳化氮、氮化硼和二維黑磷晶體)衍生的量子點(diǎn),作為新型的獨(dú)特零維材料,正在被各領(lǐng)域所認(rèn)知和發(fā)現(xiàn)。這些量子點(diǎn)具有新穎的光、催化、電子、化學(xué)和電化學(xué)特性,而且在成像、傳感、癌癥治療、光電子、顯示、催化和能源等眾多領(lǐng)域展現(xiàn)了巨大的應(yīng)用潛力。在這篇論文中,我們主要綜述了二維材料衍生的量子點(diǎn)的制備方法以及性質(zhì),此外還強(qiáng)調(diào)了這些量子點(diǎn)在電催化、光催化、超級(jí)電容器、電池和光伏領(lǐng)域的應(yīng)用潛力。
Quantum dots (QDs) derived from the atomically-thin two-dimensional (2D) sheets (graphene, transition metal dichalcogenide, graphitic carbon nitride, hexagonal boron nitride, and phosphorene) are emerging extraordinary zero-dimensional materials. Covering a broad spectrum of interesting optical, catalytic, electronic, chemical and electrochemical properties, these 2D-QDs promise a wide range of novel applications including imaging, sensing, cancer therapy, optoelectronics, display, catalysis, and energy. In this article, we discuss the synthesis methods and the properties of these 2D-QDs and emphasize their applications in electrocatalysis, photocatalysis, supercapacitors, batteries, and photovoltaics.![Chem. Soc. Rev最新二維材料量子點(diǎn)綜述:Quantum dots from 2D materials]()
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