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首页> 外文期刊>Journal of nanomaterials >Layer-by-Layer Nanoassembly of Copper Indium Gallium Selenium Nanoparticle Films for Solar Cell Applications
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Layer-by-Layer Nanoassembly of Copper Indium Gallium Selenium Nanoparticle Films for Solar Cell Applications

机译:用于太阳能电池应用的二层铜铟镓硒纳米粒子膜的层

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Thin films of CIGS nanoparticles interdigited with polymers have been fabricated through a cost-effective nonvacuum film deposition process called layer-by-layer (LbL) nanoassembly. CIGS nanoparticles synthesized by heating copper chloride, indium chloride, gallium chloride, and selenium in oleylamine were dispersed in water, and desired surface charges were obtained through pH regulation and by coating the particles with polystyrene sulfonate (PSS). Raising the pH of the nanoparticle dispersion reduced the zeta-potential from+61 mV at pH 7 to−51 mV at pH 10.5. Coating the CIGS nanoparticles with PSS (CIGS-PSS) produced a stable dispersion in water with−56.9 mV zeta-potential. Thin films of oppositely charged CIGS nanoparticles (CIGS/CIGS), CIGS nanoparticles and PSS (CIGS/PSS), and PSS-coated CIGS nanoparticles and polyethylenimine (CIGS-PSS/PEI) were constructed through the LbL nanoassembly. Film thickness and resistivity of each bilayer of the films were measured, and photoelectric properties of the films were studied for solar cell applications. Solar cell devices fabricated with a 219 nm CIGS film, when illuminated by 50 W light-source, produced 0.7 V open circuit voltage and 0.3 mA/cm2short circuit current density.
机译:通过具有称为逐层(LBL)纳米组织的成本效率的非荒过膜沉积工艺,制造了用聚合物中段的CIGS纳米粒子的薄膜。通过加热氯化铜,氯化铟,氯化镓和在油胺中合成的CIG纳米颗粒分散在水中,通过pH调节获得所需的表面电荷,并通过用聚苯乙烯磺酸盐(PSS)涂覆颗粒。提高纳米颗粒分散体的pH在pH10.5下将ζ-电位从pH7至-51mV的pH 7至-51mV中的+ 61mV降低。用PSS(CIGS-PSS)涂覆CIGS纳米颗粒在水中产生稳定的分散体 - 56.9mVζ电位。通过LBL纳米组织构建通过LBL纳米组织构建相对带电的CIGS纳米颗粒(CIGS / CIGS),CIGS纳米颗粒和PSS(CIGS / PSS)和PSS涂覆的CIGS纳米颗粒和聚乙烯亚胺(CIGS-PSS / PEI)的薄膜。测量膜的每个双层的膜厚度和电阻率,研究了薄膜的光电性能,用于太阳能电池应用。用219nm CIGS膜制造的太阳能电池器件,当由50W光源照射时,产生0.7V开路电压和0.3 mA / cm2short电流密度。

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