Surface-induced nano-generator utilizing a thermo-responsive smart window based on ionic liquid aqueous solution that exhibits lower critical solution temperature type phase separation

Kazuya Goda, Wataru Kataoka, Rina Araki
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Abstract

We demonstrate a surface-induced nano-generator utilizing a thermo-responsive smart window based on ionic liquid aqueous solution that exhibits lower critical solution temperature (LCST) type phase separation. This smart window was fabricated by filling an aqueous solution of [nBu4P][CF3COO] between the glass substrates coated with two different polymers: a polyimide with an alkyl side chain and an amorphous fluoropolymer. Below the LCST, the transmittance of the smart window was 87 %, nearly identical to that of a glass substrate. In contrast, when heated above the LCST, the [nBu4P][CF3COO] aqueous solution undergoes phase separation, causing the [nBu4P] cations and [CF3COO] anions to adsorb onto the polyimide with the alkyl side chain and the amorphous fluoropolymer facilitated by the surface pinning effect. This adsorption process results in the smart window generating electricity while transitioning to an opaque state. Therefore, the proposed smart window functions as an electricity-generating thermo-responsive device that can switch between transparent and opaque states in response to temperature changes.

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利用基于离子液体水溶液的热响应智能窗口的表面诱导纳米发电机,可实现较低临界溶液温度型相分离
我们展示了一种表面诱导型纳米发电机,它利用了一种基于离子液体水溶液的热响应智能窗口,该窗口表现出较低临界溶液温度(LCST)型相分离。这种智能窗口是通过在涂有两种不同聚合物(带烷基侧链的聚酰亚胺和无定形含氟聚合物)的玻璃基板之间填充[nBu4P][CF3COO]水溶液而制成的。在 LCST 以下,智能窗口的透射率为 87%,几乎与玻璃基板的透射率相同。相反,当加热温度高于 LCST 时,[nBu4P][CF3COO] 水溶液会发生相分离,导致[nBu4P]阳离子和[CF3COO]阴离子在表面针刺效应的作用下吸附到带有烷基侧链的聚酰亚胺和无定形含氟聚合物上。这一吸附过程使智能窗在发电的同时过渡到不透明状态。因此,所提出的智能窗可作为一种发电热响应器件,能根据温度变化在透明和不透明状态之间切换。
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