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Highly efficient carrier multiplication in PbS nanosheets

机译:PbS纳米片中的高效载流子倍增

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Semiconductor nanocrystals are promising for use in cheap and highly efficient solar cells. A high efficiency can be achieved by carrier multiplication (CM), which yields multiple electron-hole pairs for a single absorbed photon. Lead chalcogenide nanocrystals are of specific interest, since their band gap can be tuned to be optimal to exploit CM in solar cells. Interestingly, for a given photon energy CM is more efficient in bulk PbS and PbSe, which has been attributed to the higher density of states. Unfortunately, these bulk materials are not useful for solar cells due to their low band gap. Here we demonstrate that two-dimensional PbS nanosheets combine the band gap of a confined system with the high CM efficiency of bulk. Interestingly, in thin PbS nanosheets virtually the entire excess photon energy above the CM threshold is used for CM, in contrast to quantum dots, nanorods and bulk lead chalcogenide materials.RI Grozema, Ferdinand/A-3747-2013; Houtepen, Arjan/E-9754-2011; Siebbeles, Laurens/I-2401-2012OI Grozema, Ferdinand/0000-0002-4375-799X; Siebbeles, Laurens/0000-0002-4812-7495
机译:半导体纳米晶体有望用于廉价和高效的太阳能电池。载流子倍增(CM)可以实现高效率,该载流子倍增对单个吸收的光子产生多个电子-空穴对。硫族化物铅纳米晶体具有特殊的意义,因为可以调整其带隙使其最适合在太阳能电池中利用CM。有趣的是,对于给定的光子能量,CM在整体PbS和PbSe中效率更高,这归因于较高的态密度。不幸的是,这些块状材料由于其低带隙而不能用于太阳能电池。在这里,我们证明了二维PbS纳米片结合了密闭系统的带隙与高CM体积效率。有趣的是,与量子点,纳米棒和块状硫族化物材料相比,在薄的PbS纳米片中,实际上将超过CM阈值的全部多余光子能量用于CM。RIGrozema,Ferdinand / A-3747-2013; Houtepen,Arjan / E-9754-2011; Siebbeles,Laurens / I-2401-2012OI Grozema,Ferdinand / 0000-0002-4375-799X;希尔布勒斯(Siebbeles),劳伦斯(0000-0002-4812-7495)

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