Literature DB >> 30070111

Crystal-Structure-Dependent Piezotronic and Piezo-Phototronic Effects of ZnO/ZnS Core/Shell Nanowires for Enhanced Electrical Transport and Photosensing Performance.

Sehee Jeong, Min Woo Kim, Yong-Ryun Jo, Tae-Yun Kim1, Young-Chul Leem, Sang-Woo Kim1, Bong-Joong Kim, Seong-Ju Park.   

Abstract

We report the crystal-structure-dependent piezotronic and piezo-phototronic effects of ZnO/ZnS core/shell nanowires (CS NWs) having different shell layer crystalline structures. The wurtzite (WZ) ZnO/WZ ZnS CS NWs showed higher electrical transport and photosensing properties under external strain than the WZ ZnO/zinc blende (ZB) ZnS CS NWs. The WZ ZnO/WZ ZnS CS NWs under a compressive strain of -0.24% showed 4.4 and 8.67 times larger increase in the output current (1.93 × 10-4 A) and photoresponsivity (8.76 × 10-1 A/W) than those under no strain. However, the WZ ZnO/ZB ZnS CS NWs under the same strain condition showed 3.2 and 2.16 times larger increase in the output current (1.13 × 10-4 A) and photoresponsivity (2.16 × 10-1 A/W) than those under no strain. This improvement is ascribed to strain-induced piezopolarization charges at both the WZ ZnO NWs and the grains of the WZ ZnS shell layer in WZ ZnO/WZ ZnS CS NWs, whereas piezopolarization charges are induced only in the ZnO core region of the WZ ZnO/ZB ZnS CS NWs. These charges can change the type-II band alignment in the ZnO and ZnS interfacial region as well as the Schottky barrier height at the junction between the semiconductor and the metal, thus facilitating electrical transport and reducing the recombination probability of charge carriers under UV irradiation.

Entities:  

Keywords:  ZnO/ZnS core/shell nanowire; crystal-structure dependence; photosensing; piezo-phototronic effect; piezotronic effect

Year:  2018        PMID: 30070111     DOI: 10.1021/acsami.8b06192

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  Arrayed CdTeMicrodots and Their Enhanced Photodetectivity via Piezo-Phototronic Effect.

Authors:  Dong Jin Lee; G Mohan Kumar; P Ilanchezhiyan; Fu Xiao; Sh U Yuldashev; Yong Deuk Woo; Deuk Young Kim; Tae Won Kang
Journal:  Nanomaterials (Basel)       Date:  2019-02-01       Impact factor: 5.076

2.  Microwave assisted synthesis of ZnO-PbS heterojuction for degradation of organic pollutants under visible light.

Authors:  Ganapathy Mano; Subramanian Harinee; Sampath Sridhar; Mahalingam Ashok; Alagan Viswanathan
Journal:  Sci Rep       Date:  2020-02-10       Impact factor: 4.379

  2 in total

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