Synthesis and characterization of hybrid solar cell based on zinc blend semiconductor quantum dots

被引:0
|
作者
Sharma, Harit Kumar [1 ]
Agrawal, S. L. [1 ]
机构
[1] APS Univ, Dept Phys, Rewa 486003, India
关键词
Hybrid solar cell; Doctor's blade technique; Zinc blend based semiconductor; OPTICAL-PROPERTIES; SCHOTTKY DIODE; NANOPARTICLES; NANOCRYSTALS;
D O I
暂无
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
An attempt have been made to synthesise and characterize of undoped and doped zinc blend based semiconducting quantum dots prepared by a simple wet chemical precipitation method for solar cell application. Formation of semiconducting quantum dot has been ascertained by X-ray diffraction (XRD), UV-visible spectroscopy, transmission electron microscopy (TEM) and impedance spectroscopy measurements. XRD studies confirm that all the prepared samples are in zinc-blende phase and in quantum dot regime. Dopants copper and cadmium cause a shift in diffraction peaks towards lower diffraction angles with linear increase in lattice constant values. UV-visible studies reveal decrease in optical bandgap of the QDs with co-doping of Cd and Cu ion in ZnS lattice though bandgap energy is higher than that of corresponding bulk material due to quantum confinement effect and alloyed formation of nanoparticles. TEM pictures reaffirm nanocrystalline nature of samples with size ranging 4 to 8 nm supporting XRD result. Mott-Schottky analysis revealed n-type conductivity of as prepared semiconducting QDs. To test the utility of these materials bulk heterojunction hybrid solar cells have been fabricated in 1 cmx1 cm size with p-type polypyrrole. Solar cells with quaternary zinc blend {(Zn0.85Cu0.15)(0.5)Cd0.5S} structure under AM 1.5 illumination resulted in highest conversion efficiency of 1.8% and fill factor 0.81.
引用
收藏
页码:829 / 835
页数:7
相关论文
共 50 条
  • [21] Growing Quantum Dots in Polymers Advances Hybrid Solar Cell Research
    Sun, Xiao Wei
    CHEMSUSCHEM, 2010, 3 (06) : 679 - 680
  • [22] Hydrothermal synthesis of semiconductor CdSe quantum dots material for cell marking
    Wu, Ligong
    Wang, Deping
    Yao, Aihua
    Xie, Wanxing
    Huang, Wenhai
    Kuei Suan Jen Hsueh Pao/ Journal of the Chinese Ceramic Society, 2009, 37 (09): : 1580 - 1584
  • [23] Zinc Oxide Quantum Dots as Photoanode for Dye-Sensitized Solar Cell
    Idris, M. I.
    Abidin, Yasmin Zainol
    Abdullah, Huda
    Shafie, S.
    Chachuli, Siti Amaniah Mohd
    Rashid, M.
    Xian, K. J.
    2020 IEEE INTERNATIONAL CONFERENCE ON SEMICONDUCTOR ELECTRONICS (ICSE 2020), 2020, : 57 - 60
  • [24] Optical characterization of structure for semiconductor quantum dots
    Sheng, Weidong
    Xu, S. J.
    PHYSICAL REVIEW B, 2008, 77 (11):
  • [25] SYNTHESIS AND PHYSICAL CHARACTERIZATION OF II-VI-SEMICONDUCTOR NANOCRYSTALLITES (QUANTUM DOTS)
    MURRAY, CB
    BAWENDI, MG
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1993, 205 : 136 - PHYS
  • [26] SYNTHESIS AND STRUCTURAL CHARACTERIZATION OF II-VI SEMICONDUCTOR NANOCRYSTALLITES (QUANTUM DOTS)
    MURRAY, CB
    NIRMAL, M
    NORRIS, DJ
    BAWENDI, MG
    ZEITSCHRIFT FUR PHYSIK D-ATOMS MOLECULES AND CLUSTERS, 1993, 26 : S231 - S233
  • [27] Synthesis and characterization of gold-based quantum dots
    Volpe, MV
    Longo, A
    Pasquini, L
    Casuscelli, V
    Carotenuto, G
    JOURNAL OF MATERIALS SCIENCE LETTERS, 2003, 22 (23) : 1697 - 1699
  • [28] Hybrid structures based on gold nanoparticles and semiconductor quantum dots for biosensor applications
    Kurochkina, Margarita
    Konshina, Elena
    Oseev, Aleksandr
    Hirsch, Soeren
    NANOTECHNOLOGY SCIENCE AND APPLICATIONS, 2018, 11 : 15 - 21
  • [29] Photocatalytic properties of hybrid structures based on Titania nanoparticles and semiconductor quantum dots
    Anastasiya Makovetskaya
    Ekaterina Kolesova
    Vladimir Maslov
    Aliaksei Dubavik
    Yurii Gun’ko
    Anna Orlova
    Optical and Quantum Electronics, 2020, 52
  • [30] Qubits based on semiconductor quantum dots
    Zhang, Xin
    Li, Hai-Ou
    Wang, Ke
    Cao, Gang
    Xiao, Ming
    Guo, Guo-Ping
    CHINESE PHYSICS B, 2018, 27 (02)