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Switchable optical transmittance of TiO2 submicron-diameter wire suspension-based 'smart window' device

机译:TiO2亚微米直径线悬浮的“智能窗口”器件的可切换光学透射率

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In this paper for the first time, a TiO2 submicron-diameter wire suspension-based smart window device is demonstrated in which combined planar and finger electrodes are utilised to reversibly change the orientation of the nanowires. Electrospun TiO2 anatase submicron-diameter wire suspensions in a viscous polydimethylsiloxane (PDMS) matrix were prepared directly from electrospun submicron-diameter fibre mats by using high-shear mixing, achieving the complete break-up of all electrospun mats and suspending TiO2 submicron-diameter wires uniformly in the PDMS matrix. Suspension was used as an active layer in an electro-optical device where a reversible change in light scattering is achieved by preparing a device consisting of an active layer and combined planar and finger electrode system. Using the constructed device, it was possible to change the alignment or spatial distribution of TiO2 submicron-diameter wires by applying a DC electric field across the planar or finger, electrodes thus changing the transmittance (Delta T= 25%) of the suspension and demonstrating the potential to use combined planar and finger electrode devices in smart window applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文首次展示了一种基于TiO2的亚微米直径线悬浮液的智能窗装置,其中结合了平面电极和指状电极可逆地改变纳米线的方向。通过高剪切混合直接从电纺亚微米直径的纤维毡中制备粘稠的聚二甲基硅氧烷(PDMS)基质中的电纺TiO2锐钛矿亚微米直径的线材悬浮液,实现了所有电纺垫的完全破裂并悬浮了TiO2亚微米直径的线材均匀地放在PDMS矩阵中。悬浮液被用作电光装置中的活性层,通过制备由活性层以及平面和指状电极系统组合而成的器件,可以实现光散射的可逆变化。使用构造的装置,可以通过在平面或手指,电极上施加直流电场来改变TiO2亚微米直径线的排列或空间分布,从而改变悬浮液的透射率(Delta T = 25%)并演示在智能窗户应用中结合使用平面和指状电极设备的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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