首页> 外文会议>Device Research Conference >Optoelectronics based on Vertical Transport in Multi-layer MoS2
【24h】

Optoelectronics based on Vertical Transport in Multi-layer MoS2

机译:基于多层MOS2垂直传输的光电子

获取原文

摘要

High photon absorption and photoconductive gain observed in 2D Transition Metal Dichalcogenides make them exciting candidates for high performance photodetectors and photovoltaics [1]. However, slow response times and low$mathrm{V}_{mathrm{oc}}$(open circuit voltage) have hindered the development of reliable optoelectronic devices [1]. Most attempts to mitigate these disadvantages involve fabrication of complex heterostructures [2]–[4], which may render them unfit for large area production. Besides, almost all reports on MeSi-bascd opto-electronics exploit its lateral transport while studies on vertical transport towards detectors and photovoltaics are at an embryonic stage. In this work, we demonstrate that a facile vertical metal/multilaycr-Mo'Sc/rnctal device can be engineered to enable both excellent photodetectors (with high responsivity$> 3mathrm{A}/mathrm{W}$& good speed ~ 1 ms) OR high$mathrm{V}_{mathrm{oc}}(sim 0.5mathrm{V})$photovoltaics. We adopt a conscious design strategy of employing vertical instead of lateral transport through multilayer Mos2 as this provides both larger area for photon absorption, as well as short charge transfer length (enabling effective separation) [Fig l(a)].
机译:在2D过渡金属二甲基化物中观察到的高光子吸收和光电导增益使它们成为高性能光电探测器和光伏的令人兴奋的候选者[1]。但是,响应时间和低慢 $ mathrm {v} _ { mathrm {oc}} $ (开路电压)阻碍了可靠的光电器件的开发[1]。大多数试图减轻这些缺点涉及复杂异质结构的制造[2] - [4],这可能使它们不适合大面积的生产。此外,几乎所有关于Mesi-Bascd Opto-Electronics的报告都利用了其横向运输,同时对探测器和光伏的垂直传输研究处于胚胎阶段。在这项工作中,我们证明了容易的垂直金属/多层CR-Mo'sc / Rnctal装置可以设计成使得能够高度的光电探测器(具有高响应度 $> 3 mathrm {a } / mathrm {w} $ &良好的速度〜1 ms)或高 $ mathrm {v} _ { mathrm {oc}}( sim 0.5 mathrm {v})$ 光伏。我们采用了采用垂直而不是通过多层MOS2采用垂直传输的有意识的设计策略,因为这为光子吸收提供了更大的区域,以及短电荷转移长度(实现有效分离)[图L(a)]。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号