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基于非共轭三臂三联吡啶的界面配位纳米片:一种高效颜色的电致变色材料,兼具快速切换和长光学记忆特性。

Interfacial Coordination Nanosheet Based on Nonconjugated Three-Arm Terpyridine: A Highly Color-Efficient Electrochromic Material to Converge Fast Switching with Long Optical Memory.

作者信息

Roy Susmita, Chakraborty Chanchal

机构信息

Department of Chemistry, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Jawahar Nagar, Shameerpet Mandal, Hyderabad 500078, India.

出版信息

ACS Appl Mater Interfaces. 2020 Aug 5;12(31):35181-35192. doi: 10.1021/acsami.0c06045. Epub 2020 Jul 22.

Abstract

An electrochromic (EC) hyperbranched coordination nanosheet (CONASH) comprising a three-arm terpyridine (3tpy)-based ligand and Fe(II) ion has been synthesized by interfacial complexation at the liquid-liquid interface. The film can be easily deposited on the desired substrate such as indium tin oxide (ITO) glass. Characterization of CONASH deposited on ITO by microscopic methods reveals the homogeneous nanosheet film with an ∼350 nm thickness after 48 h of reaction. The fabricated solid-state EC device (ECD) undergoes a reversible redox reaction (Fe → Fe) in the potential range of +3 to -2 V in ECDs accompanied with a distinct color change from intense pink to colorless for several switching cycles with a coloration time of 1.15 s and a bleaching time of 2.49 s along with a high coloration efficiency of 470.16 cm C. Besides, the nonconjugated 3tpy ligand restricts the easy electron redox conduction inside the EC film to enhance the EC memory in open-circuit condition as it shows 50% retention of its colorless state until 25 min. The long EC memory compared to other metallo-supramolecular polymers having a conjugated ligand suggests the potentiality of the 3tpy-Fe CONASH film to be used as a power-efficient EC material for modern display device applications.

摘要

通过液 - 液界面的界面络合反应合成了一种电致变色(EC)超支化配位纳米片(CONASH),它由基于三臂三联吡啶(3tpy)的配体和Fe(II)离子组成。该薄膜可以很容易地沉积在所需的基板上,如氧化铟锡(ITO)玻璃。通过显微镜方法对沉积在ITO上的CONASH进行表征,结果显示在反应48小时后形成了厚度约为350 nm的均匀纳米片薄膜。所制备的固态电致变色器件(ECD)在ECD中 +3至 -2 V的电位范围内经历可逆的氧化还原反应(Fe → Fe),伴随着明显的颜色变化,在几个切换循环中从深粉色变为无色,显色时间为1.15 s,褪色时间为2.49 s,同时具有高达470.16 cm C的高显色效率。此外,非共轭的3tpy配体限制了EC薄膜内部电子的容易氧化还原传导,从而增强了开路条件下的EC记忆,因为它在25分钟内保持其无色状态的50%。与具有共轭配体的其他金属超分子聚合物相比,较长的EC记忆表明3tpy - Fe CONASH薄膜有潜力用作现代显示器件应用中的高效节能EC材料。

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