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Luminescent Electrochromic Devices for Smart Windows of Energy-Efficient Buildings

机译:用于节能建筑的智能窗户的发光电致变色装置

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摘要

To address the challenges of the next generation of smart windows for energy-efficient buildings, new electrochromic devices (ECDs) are introduced. These include indium molybdenum oxide (IMO), a conducting oxide transparent in the near-infrared (NIR) region, and a NIR-emitting electrolyte. The novel electrolytes are based on a sol-gel-derived di-urethane cross-linked siloxane-based host structure, including short chains of poly (ε-caprolactone) (PCL(530) (where 530 represents the average molecular weight in g mol−1). This hybrid framework was doped with a combination of either, lithium triflate (LiTrif) and erbium triflate (ErTrif3), or LiTrif and bisaquatris (thenoyltrifluoroacetonate) erbium (III) ([Er(tta)3(H2O)2]). The ECD@LiTrif-[Er(tta)3(H2O)2] device presents a typical Er3+ NIR emission around 1550 nm. The figures of merit of these devices are high cycling stability, good reversibility, and unusually high coloration efficiency (CE = ΔOD/ΔQ, where Q is the inserted/de-inserted charge density). CE values of −8824/+6569 cm2 C−1 and −8243/+5200 cm2 C−1 were achieved at 555 nm on the 400th cycle, for ECD@LiTrif-ErTrif3 and ECD@LiTrif-[Er(tta)3(H2O)2], respectively.
机译:为解决下一代智能窗口的节能建筑的挑战,介绍了新的电致变色装置(ECD)。它们包括氧化铟氧化铟(IMO),近红外(NIR)区域的导电氧化物,以及发射电解质。新型电解质基于溶胶 - 凝胶衍生的二氨基氨基氨基交联硅氧烷基宿主结构,包括聚(ε-己内酯)的短链(PCl(530)(其中530表示G摩尔的平均分子量) -1)。该杂交框架掺杂有锂三氟甲磺酸锂(LITRIF)和Triflate(ertrif3),或Litrif和Bisaquatris(Theoyltriforoacetonate)erbium(III)([ER(TTA)3(H2O)2] )。ECD @ Litrif-[ER(TTA)3(H2O)2]器件呈现典型的ER3 + NIR发射左右约为1550nm。这些装置的优点是高循环稳定性,良好的可逆性和异常高着色效率( Ce =ΔOd/ΔQ,其中Q是插入/解段充电密度)。在第400个循环上以555nm实现-8824 / + 6569cm 2 C-1和-8243 / + 5200cm 2 C-1的Ce值,对于ECD @ LITRIF-ERTRIF3和ECD @ LITRIF-[ER(TTA)3(H2O)2],分别。

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