Degradation study of carrier selective contact silicon solar cells with ageing: Role of silicon surface morphology

被引:3
|
作者
Singh, Krishna [1 ]
Nayak, Mrutyunjay [1 ]
Singh, Dipak Kumar [2 ]
Komarala, Vamsi K. [1 ]
机构
[1] Indian Inst Technol Delhi, Ctr Energy Studies, New Delhi 110016, India
[2] Natl Inst Technol Patna, Dept Elect & Commun, Patna 800005, Bihar, India
关键词
Silicon surface morphology; MoOx stability; Ageing effect; Carrier selective contacts; Solar cells; Work function; WORK FUNCTION; METAL-OXIDES;
D O I
10.1016/j.sse.2021.107987
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Ageing effect on the performance of Ag/ITO/MoOx/n-Si/LiFx/Al carrier selective contact (CSC) silicon solar cells has been investigated based on silicon surface morphology (planar, different pyramid sizes, and chemical polishing of pyramids). The cells with small silicon pyramids (similar to 2 mu m) have shown better stability with time than the medium/large pyramids (similar to 5/similar to 8 mu m). The chemical polishing of pyramid peaks and valleys has further reduced the cells ageing effect due to minimization of the microstructural stress (tensile in the valleys and compressive at the peaks) at the MoOx/n-Si interface, which has been verified indirectly with cells fabricated on a planar surface. The cell's performance degradation based on morphology points out the instability of the MoOx layer and Schottky barrier reduction, which results in hole-transport hindrance at the MoOx/n-Si junction with the S-shape in J-V graphs under illumination. The ageing effect on device performance is further investigated using the Sentaurus TCAD simulations with the MoOx layer work function variation, and the study indicates the band bending reduction (minimal carrier inversion) and hole transport barrier at the junction region.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] Effects of substrate surface morphology on microcrystalline silicon solar cells
    Nasuno, Y
    Kondo, M
    Matsuda, A
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS, 2001, 40 (4A): : L303 - L305
  • [22] 23.5%-efficient silicon heterojunction silicon solar cell using molybdenum oxide as hole-selective contact
    Dreon, Julie
    Jeangros, Quentin
    Cattin, Jean
    Haschke, Jan
    Antognini, Luca
    Ballif, Christophe
    Boccard, Mathieu
    NANO ENERGY, 2020, 70
  • [23] Surface passivation by silicon nitride in Laser Grooved Buried Contact (LGBC) silicon solar cells
    Claudio, G.
    Bass, K.
    Heasman, K.
    Cole, A.
    Roberts, S.
    Watson, S.
    Boreland, M.
    SUPERLATTICES AND MICROSTRUCTURES, 2009, 45 (4-5) : 234 - 239
  • [24] Investigation of anomalous behaviour in J-V and Suns-Voc characteristics of carrier-selective contact silicon solar cells
    Nayak, Mrutyunjay
    Mudgal, Sapna
    Singh, Sonpal
    Komarala, Vamsi K.
    SOLAR ENERGY, 2020, 201 : 307 - 313
  • [25] Sputtered Tungsten Oxide as Hole Contact for Silicon Heterojunction Solar Cells
    Mews, Mathias
    Lemaire, Antoine
    Korte, Lars
    IEEE JOURNAL OF PHOTOVOLTAICS, 2017, 7 (05): : 1209 - 1215
  • [26] Study of Ni/Cu Front Metal Contact Applying Selective Emitter Silicon Solar Cells
    Lee, JaeDoo
    Kwon, Hyukyong
    Lee, SooHong
    KOREAN JOURNAL OF METALS AND MATERIALS, 2011, 49 (11): : 905 - 909
  • [27] Transparent Electrodes in Silicon Heterojunction Solar Cells: Influence on Contact Passivation
    Tomasi, Andrea
    Sahli, Florent
    Seif, Johannes Peter
    Fanni, Lorenzo
    Agut, Silvia Martin de Nicolas
    Geissbuehler, Jonas
    Paviet-Salomon, Bertrand
    Nicolay, Sylvain
    Barraud, Loris
    Niesen, Bjoern
    De Wolf, Stefaan
    Ballif, Christophe
    IEEE JOURNAL OF PHOTOVOLTAICS, 2016, 6 (01): : 17 - 27
  • [28] Laser Annealing of Carrier-Selective MoOx Layers for Silicon Solar Cells
    Wilkes, George C.
    Gupta, Mool C.
    2020 47TH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE (PVSC), 2020, : 2453 - 2455
  • [29] Modeling of transport in carrier-selective contacts in silicon heterojunction solar cells
    Muralidharan, Pradyumna
    Goodnick, Stephen M.
    Vasileska, Dragica
    PROGRESS IN PHOTOVOLTAICS, 2022, 30 (05): : 490 - 502
  • [30] Effect of textured silicon pyramids size and chemical polishing on the performance of carrier-selective contact heterojunction solar cells
    Singh, Krishna
    Nayak, Mrutyunjay
    Mudgal, Sapna
    Singh, Sonpal
    Komarala, Vamsi K.
    SOLAR ENERGY, 2019, 183 : 469 - 475