One-Step, In Situ Hydrothermal Fabrication of Cobalt-Doped ZnO/CdS Nanosheets for Optoelectronic Applications

被引:3
|
作者
Maddi, Lakshmiprasad [1 ]
Vinukonda, Khidhirbrahmendra [2 ]
Gurugubelli, Thirumala Rao [1 ]
Koutavarapu, Ravindranadh [3 ]
机构
[1] GMR Inst Technol, Dept Basic Sci & Humanities, Phys Div, Rajam 532127, Andhra Pradesh, India
[2] Sri GCSR Degree Coll, Dept Phys, Rajam 532127, Andhra Pradesh, India
[3] Yeungnam Univ, Coll Mech & IT Engn, Dept Robot Engn, Gyongsan 38541, South Korea
关键词
ZnO; CdS nanosheets; cobalt-doped; optoelectronics; photoluminescence; PHOTOLUMINESCENCE; EFFICIENT;
D O I
10.3390/electronics12051245
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
An in-situ hydrothermal process was used to create Co-doped ZnO/CdS nanosheets in order to examine the effects of the divalent impurity (Co) ions on the structural, morphological, optical, and magnetic characteristics of the test material. For both ZnO and CdS, XRD verified the development of a hexagonal wurtzite structure. SEM, TEM, and HR-TEM studies produced sheet-like morphology. Elemental mapping and XPS examination verified the presence of essential elements (S, Cd, O, Co, and Zn). Co-doping dramatically increased the nanosheets' ability to absorb light in the visible area. Comparing the bandgap energy to pure ZnO and ZnO/CdS nanocomposites, the bandgap energy (2.59 eV) was well-regulated. The PL spectrum at 577 nm showed a prominent yellow emission band that was attributed to the (4)A(2g)(F) -> T-4(1g)(F) transition. Improvement in the room temperature ferromagnetic properties was observed due to doping of Co2+ ions. Warm white light harvesting was confirmed by the estimated CCT value (3540 K). The test material appears to be suitable for the creation of next-generation optoelectronic devices.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] One-step fabrication of silica colloidosomes with in situ drug encapsulation
    Su, Yechao
    Zhao, Hong
    Wu, Jinrong
    Xu, Jianhong
    RSC ADVANCES, 2016, 6 (113): : 112292 - 112299
  • [32] One-step synthesis of high pure CdS nanofilms via hydrothermal method
    Haineng Bai
    Fuqiang Guo
    Baohua Zhang
    Litao Gai
    Renqing Guo
    Journal of Materials Science: Materials in Electronics, 2018, 29 : 9193 - 9199
  • [33] One-Step Hydrothermal Synthesis of Comb-Like ZnO Nanostructures
    Xu, Xiaobin
    Wu, Min
    Asoro, Michael
    Ferreira, P. J.
    Fan, D. L.
    CRYSTAL GROWTH & DESIGN, 2012, 12 (10) : 4829 - 4833
  • [34] One-step synthesis of high pure CdS nanofilms via hydrothermal method
    Bai, Haineng
    Guo, Fuqiang
    Zhang, Baohua
    Gai, Litao
    Guo, Renqing
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2018, 29 (11) : 9193 - 9199
  • [35] One-Step Synthesis of Monodisperse In-Doped ZnO Nanocrystals
    Wang, Qing Ling
    Yang, Ye Feng
    He, Hai Ping
    Chen, Dong Dong
    Ye, Zhi Zhen
    Jin, Yi Zheng
    NANOSCALE RESEARCH LETTERS, 2010, 5 (05): : 882 - 888
  • [36] One-Step Synthesis of Monodisperse In-Doped ZnO Nanocrystals
    Qing Ling Wang
    Ye Feng Yang
    Hai Ping He
    Dong Dong Chen
    Zhi Zhen Ye
    Yi Zheng Jin
    Nanoscale Research Letters, 5
  • [37] One-step hydrothermal fabrication of nanosheet-assembled NiO/ZnO microflower and its ethanol sensing property
    Zhu, Ling
    Zeng, Wen
    Yang, Jingdong
    Li, Yanqiong
    CERAMICS INTERNATIONAL, 2018, 44 (16) : 19825 - 19830
  • [38] From nanorods of palygorskite to nanosheets of smectite via a one-step hydrothermal process
    Wang, Wenbo
    Zhang, Zhifang
    Tian, Guangyan
    Wang, Aiqin
    RSC ADVANCES, 2015, 5 (72) : 58107 - 58115
  • [39] One-step hydrothermal synthesis with in situ milling of biologically relevant hydroxyapatite
    Chesley, Mitchell
    Kennard, Raymond
    Roozbahani, Sahar
    Kim, Su Min
    Kukk, Kora
    Mason, Michael
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 113
  • [40] One-step fabrication of ultralong nanobelts of PI-PTCDI and their optoelectronic properties
    Yang, Bo
    Wang, Feng-Xia
    Wang, Kai-Kai
    Yan, Jing-Hui
    Liu, Yong-Qiang
    Pan, Ge-Bo
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (46) : 25251 - 25254