Fiber Solar Cells: Materials, Processing and Devices by Shaocong Hou

By Shaocong Hou

This thesis provides the elemental study and newest findings on novel flexible/wearable photovoltaic expertise, and comprehensively summarizes the speedy advancements in versatile photovoltaics, from conventional planar sun cells to fiber sunlight cells. It discusses the rational layout of fiber sunlight cellphone fabrics, electrodes and units, in addition to severe elements together with fee, potency, flexibility and balance . in addition, it addresses basic theoretical rules and novel fabrication applied sciences and their power functions. The booklet presents sensible details for college researchers and graduate scholars drawn to versatile fiber photovoltaics, and evokes them to layout different novel flexible/wearable electronics and textiles.

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2731495 49. Fan SQ, Fang B, Kim JH, Jeong B, Kim C, Yu JS, Ko J (2010) Ordered multimodal porous carbon as highly efficient counter electrodes in dye-sensitized and quantum-dot solar cells. Langmuir 26(16):13644–13649. 1021/La1019873 50. Zhang J, Li XX, Guo W, Hreid T, Hou JF, Su HQ, Yuan ZB (2011) Electropolymerization of a poly(3,4-ethylenedioxythiophene) and functionalized, multi-walled, carbon nanotubes counter electrode for dye-sensitized solar cells and characterization of its performance.

201301020 102. Cai X, Hou SC, Wu HW, Lv ZB, Fu YP, Wang D, Zhang C, Kafafy H, Chu ZZ, Zou DC (2012) All-carbon electrode-based fiber-shaped dye-sensitized solar cells. PCCP 14(1):125– 130. 1039/C1cp22613d 103. Wang W, Zhao Q, Li H, Wu HW, Zou DC, Yu DP (2012) Transparent, double-sided, ITO-free, flexible dye-sensitized solar cells based on metal wire/ZnO nanowire arrays. Adv Funct Mater 22(13):2775–2782. 201200168 104. Cai FJ, Chen T, Peng HS (2012) All carbon nanotube fiber electrode-based dye-sensitized photovoltaic wire.

Considering excellent conductivity, dye-sensitized carbon nanotubes fibers were also used to be directly assembled into fiber DSSCs, but its efficiency was far below other materials [104]. Different absorbers or sensitizers are also reported to replace Ru-based dyes. 18% [105, 106]. It is worthy to note that, during writing this thesis, there is great progress on organic inorganic perovskite for fiber solar cells. On the other hand, there are few successes on flexible fiber DSSCs with single-fiber electrode architecture.

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