Literature DB >> 26072830

Metal-insulator-semiconductor heterostructures for plasmonic hot-carrier optoelectronics.

F Pelayo García de Arquer, Gerasimos Konstantatos.   

Abstract

Plasmonic hot-electron devices are attractive candidates for light-energy harvesting and photodetection applications. For solid state devices, the most compact and straightforward architecture is the metal-semiconductor Schottky junction. However convenient, this structure introduces limitations such as the elevated dark current associated to thermionic emission, or constraints for device design due to the finite choice of materials. In this work we theoretically consider the metal-insulator-semiconductor heterojunction as a candidate for plasmonic hot-carrier photodetection and solar cells. The presence of the insulating layer can significantly reduce the dark current, resulting in increased device performance with predicted solar power conversion efficiencies up to 9%. For photodetection, the sensitivity can be extended well into the infrared by a judicious choice of the insulating layer, with up to 300-fold expected enhancement in detectivity.

Entities:  

Year:  2015        PMID: 26072830     DOI: 10.1364/OE.23.014715

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  3 in total

1.  One-Step Solvothermal Method to Prepare Ag/Cu2O Composite With Enhanced Photocatalytic Properties.

Authors:  Xiaolong Deng; Chenggang Wang; E Zhou; Jinzhao Huang; Minghui Shao; Xianqi Wei; Xiaojing Liu; Meng Ding; Xijin Xu
Journal:  Nanoscale Res Lett       Date:  2016-01-19       Impact factor: 4.703

2.  Polarization Enhanced Charge Transfer: Dual-Band GaN-Based Plasmonic Photodetector.

Authors:  Ran Jia; Dongfang Zhao; Naikun Gao; Duo Liu
Journal:  Sci Rep       Date:  2017-01-13       Impact factor: 4.379

3.  Plasmonically Enhanced Schottky Photovoltaic Devices.

Authors:  M Farhat; S Kais; F H Alharbi
Journal:  Sci Rep       Date:  2017-10-27       Impact factor: 4.379

  3 in total

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