CN

Wang Jena

Associate professor

Supervisor of Master's Candidates

Date of Birth:1977-12-05

School/Department:电子科学系

Administrative Position:无

Education Level:Postgraduate (Doctoral)

Business Address:翡翠科教楼B509室

Gender:Female

Degree:Doctoral degree

Academic Titles:无

Other Post:无

Alma Mater:中国科学院固体物理研究所

Discipline:Microelectronics and Solid-state Electronics

Paper Publications

Plasmonic Silver Nanosphere Enhanced ZnSe Nanoribbon/Si Heterojunction Optoelectronic Devices

Release time:2016-06-01 Hits:

Impact Factor:3.5

DOI number:10.1088/0957-4484/27/21/215202

Journal:Nanotechnology

Key Words:zinc selenide;localized surface plasmon resonance;solar cell;photodetector;optoelectronic devices

Abstract:In this study, we report a localized surface plasmon resonance (LSPR) enhanced optoelectronic device based on a ZnSe:Sb nanoribbon (NR)/Si nano-heterojunction. We experimentally demonstrated that the LSPR peaks of plasmonic Ag nanoparticles (Ag NPs) can be readily tuned by changing their size distribution. Optical analysis reveals that the absorption of ZnSe: Sb NRs was increased after the decoration of the Ag NPs with strong LSPR. Further analysis of the optoelectronic device confirmed the device performance can be promoted: for example, the short-circuit photocurrent density of the ZnSe/Si heterojunction solar cell was improved by 57.6% from 11.75 to 18.52 mA cm(-2) compared to that without Ag NPs. Meanwhile, the responsivity and detectivity of the ZnSe: Sb NRs/Si heterojunction device increased from 117.2 to 184.8 mAW(-1), and from 5.86 x 10(11) to 9.20 x 10(11) cm Hz(1/2)W(-1), respectively.

Co-author:Ran Chen, Zhi-Fei Ren, Cai-Wang Ge, Zhen-Xing Liu, Shu-Juan He, Yong-Qiang Yu, Chun-Yan Wu, Lin-Bao Luo

First Author:Li Wang

Correspondence Author:Lin-Bao Luo

Document Type:Article

Volume:27

Issue:21

ISSN No.:0957-4484

Translation or Not:no

Date of Publication:2016-05-27

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