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HgTe纳米晶体薄膜中结构与检测特性的关联

Correlating Structure and Detection Properties in HgTe Nanocrystal Films.

作者信息

Chee Sang-Soo, Gréboval Charlie, Magalhaes Debora Vale, Ramade Julien, Chu Audrey, Qu Junling, Rastogi Prachi, Khalili Adrien, Dang Tung Huu, Dabard Corentin, Prado Yoann, Patriarche Gilles, Chaste Julien, Rosticher Michael, Bals Sara, Delerue Christophe, Lhuillier Emmanuel

机构信息

CNRS, Institut des NanoSciences de Paris, Sorbonne Université, 4 place Jussieu, 75005 Paris, France.

Nanomaterials and Nanotechnology Center, Korea Institute of Ceramic Engineering and Technology (KICET), 101 Soho-ro, 52851 Jinju-si, Republic of Korea.

出版信息

Nano Lett. 2021 May 26;21(10):4145-4151. doi: 10.1021/acs.nanolett.0c04346. Epub 2021 May 6.

Abstract

HgTe nanocrystals (NCs) enable broadly tunable infrared absorption, now commonly used to design light sensors. This material tends to grow under multipodic shapes and does not present well-defined size distributions. Such point generates traps and reduces the particle packing, leading to a reduced mobility. It is thus highly desirable to comprehensively explore the effect of the shape on their performance. Here, we show, using a combination of electron tomography and tight binding simulations, that the charge dissociation is strong within HgTe NCs, but poorly shape dependent. Then, we design a dual-gate field-effect-transistor made of tripod HgTe NCs and use it to generate a planar p-n junction, offering more tunability than its vertical geometry counterpart. Interestingly, the performance of the tripods is higher than sphere ones, and this can be correlated with a stronger Te excess in the case of sphere shapes which is responsible for a higher hole trap density.

摘要

碲化汞纳米晶体(NCs)具有广泛可调的红外吸收特性,目前常用于设计光传感器。这种材料倾向于以多枝状生长,且不存在明确的尺寸分布。这一点会产生陷阱并降低粒子堆积,从而导致迁移率降低。因此,全面探索形状对其性能的影响非常必要。在这里,我们结合电子断层扫描和紧束缚模拟表明,电荷离解在碲化汞纳米晶体内很强,但与形状的相关性较弱。然后,我们设计了一种由三脚架状碲化汞纳米晶体制成的双栅场效应晶体管,并利用它来生成一个平面p-n结,与垂直几何结构的对应物相比,具有更多的可调性。有趣的是,三脚架状的性能高于球状的,这可能与球状情况下更强的碲过量有关,碲过量导致更高的空穴陷阱密度。

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