Literature DB >> 24040832

3D Branched nanowire photoelectrochemical electrodes for efficient solar water splitting.

Alireza Kargar1, Ke Sun, Yi Jing, Chulmin Choi, Huisu Jeong, Gun Young Jung, Sungho Jin, Deli Wang.   

Abstract

We report the systematic study of 3D ZnO/Si branched nanowire (b-NW) photoelectrodes and their application in solar water splitting. We focus our study on the correlation between the electrode design and structures (including Si NW doping, dimension of the trunk Si and branch ZnO NWs, and b-NW pitch size) and their photoelectrochemical (PEC) performances (efficiency and stability) under neutral conditions. Specifically, we show that for b-NW electrodes with lightly doped p-Si NW core, larger ZnO NW branches and longer Si NW cores give a higher photocathodic current, while for b-NWs with heavily doped p-Si NW trunks smaller ZnO NWs and shorter Si NWs provide a higher photoanodic current. Interestingly, the photocurrent turn-on potential decreases with longer p-Si NW trunks and larger ZnO NW branches resulting in a significant photocathodic turn-on potential shift of ~600 mV for the optimized ZnO/p-Si b-NWs compared to that of the bare p-Si NWs. A photocathode energy conversion efficiency of greater than 2% at -1 V versus Pt counter electrode and in neutral solution is achieved for the optimized ZnO/p-Si b-NW electrodes. The PEC performances or incident photon-to-current efficiency are further improved using Si NW cores with smaller pitch size. The photoelectrode stability is dramatically improved by coating a thin TiO2 protection layer using atomic-layer deposition method. These results provide very useful guidelines in designing photoelectrodes for selective solar water oxidation/reduction and overall spontaneous solar fuel generation using low cost earth-abundant materials for practical clean solar fuel production.

Entities:  

Year:  2013        PMID: 24040832     DOI: 10.1021/nn404170y

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  5 in total

1.  Structural Evolution of Chemically-Driven RuO2 Nanowires and 3-Dimensional Design for Photo-Catalytic Applications.

Authors:  Joonmo Park; Jae Won Lee; Byeong Uk Ye; Sung Hee Chun; Sung He Chun; Sang Hoon Joo; Hyunwoong Park; Heon Lee; Hu Young Jeong; Myung Hwa Kim; Jeong Min Baik
Journal:  Sci Rep       Date:  2015-07-07       Impact factor: 4.379

2.  Electronic structure engineering of Cu2O film/ZnO nanorods array all-oxide p-n heterostructure for enhanced photoelectrochemical property and self-powered biosensing application.

Authors:  Zhuo Kang; Xiaoqin Yan; Yunfei Wang; Zhiming Bai; Yichong Liu; Zheng Zhang; Pei Lin; Xiaohui Zhang; Haoge Yuan; Xueji Zhang; Yue Zhang
Journal:  Sci Rep       Date:  2015-01-20       Impact factor: 4.379

3.  Photoelectrochemical performance of N-doped ZnO branched nanowire photoanodes.

Authors:  Shrok Allami; Zainab D Abid Ali; Ying Li; Hayder Hamody; Basher Hasan Jawad; Li Liu; Tianshu Li
Journal:  Heliyon       Date:  2017-10-12

4.  InGaN-based photoanode with ZnO nanowires for water splitting.

Authors:  Junjie Kang; Vinhquang Dang; Hongjian Li; Sungjin Moon; Panpan Li; Yangdoo Kim; Chaehyun Kim; Hakjong Choi; Zhiqiang Liu; Heon Lee
Journal:  Nano Converg       Date:  2016-12-14

Review 5.  Approaches for Modifying Oxide-Semiconductor Materials to Increase the Efficiency of Photocatalytic Water Splitting.

Authors:  Svetlana Grushevskaya; Irina Belyanskaya; Oleg Kozaderov
Journal:  Materials (Basel)       Date:  2022-07-14       Impact factor: 3.748

  5 in total

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