首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Effect of particle size and amorphous phase on the electrochromic properties of kinetically deposited WO3 films
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Effect of particle size and amorphous phase on the electrochromic properties of kinetically deposited WO3 films

机译:粒度和非晶相对动力学沉积WO3薄膜电致变色特性的影响

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The electrochromic (EC) performance of a WO3 film fabricated using a kinetic spray technique (nanoparticle deposition system, NPDS) was examined as a function of the particle size and phase of the WO3 particles. The total transmittance change of the deposited WO3 film containing crystalline nano-sized WO3 particles was 56% at 800 nm, which resulted in a large shift in its transmission spectrum after coloring. Moreover, the charge density of the EC film using crystalline nano-sized WO3 particles was 22.06 mC cm(-2), which was 2.8 times higher than that of the film composed of crystalline micro-sized WO3 particles (7.97 mC cm(-2)). Using crystalline nano-sized WO3 particles greatly increased the surface area, increased the number of absorption sites for Li ions inside the film, and thereby improved the charge density and transmittance. The transmittance change of the EC films using dual-phased nano-sized WO3 particles was 64% (at 800 nm), which was still higher than that with crystalline nano-sized WO3 particles. The amorphous phase in the dual-phase nano-sized WO3 film provided good diffusion of Li ions; it had a high diffusion coefficient of 1.53 x 10(-12) cm(2) s(-1) that derived from its loosely packed atomic structure. The amorphous region in a heterostructured WO3 film was effective for the fast diffusion of Li ions, while the crystalline nano-sized region in such a film provided a large surface area for an increased number of absorption sites for Li ions. This resulted in a dramatic improvement of the EC performance.
机译:使用动力学喷雾技术(纳米粒子沉积系统,NPDs)制造的WO3膜的电致变色(EC)性能作为WO3颗粒的粒度和相的函数。含有结晶纳米WO3颗粒的沉积WO3膜的总透射率变化在800nm处为56%,在着色后导致其透射光谱的大移位。此外,使用结晶纳米型WO3颗粒的EC膜的电荷密度为22.06mc cm(-2),比由结晶微尺寸WO3颗粒组成的薄膜高2.8倍(7.97mc cm(-2 )))。使用结晶纳米大小的WO3颗粒大大增加了表面积,增加了膜内的Li离子的吸收点数,从而提高了电荷密度和透射率。使用双相纳米大小的WO3颗粒的EC膜的透射率变化为64%(800nm),仍然高于结晶纳米大小的WO3颗粒。双相纳米型WO3膜中的非晶相提供了Li离子的良好扩散;它具有1.53×10(-12)厘米(2)厘米(-1)的高扩散系数,其源自其松散包装的原子结构。异质化WO3膜中的无定形区域对于Li离子的快速扩散是有效的,而这种膜中的结晶纳米尺寸区域提供了大的表面积,用于增加Li离子数量的吸收性位点。这导致了EC性能的显着提高。

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