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刺激响应性呋喃和噻吩取代的二氟硼β-二酮酸盐材料。

Stimuli Responsive Furan and Thiophene Substituted Difluoroboron β-Diketonate Materials.

作者信息

Morris William A, Butler Tristan, Kolpaczynska Milena, Fraser Cassandra L

机构信息

Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904.

出版信息

Mater Chem Front. 2017 Jan 1;1(1):158-166. doi: 10.1039/C6QM00008H. Epub 2016 Jul 29.

Abstract

Difluoroboron β-diketonate (BFbdk) compounds exhibit solid-state switchable luminescence under excitation by UV light. This property is usually manifested as a blue-shift in emission when dye films are thermally annealed followed by a red-shift in response to mechanical shear (i.e. mechanochromic luminescence). Here we report thiophene and furan heterocycle-substituted dyes bearing short methoxy and long dodecyloxy chain substituents. Optical properties of the dyes were investigated in solution, pristine powders, and films on paper and glass. The structural and thermal properties of the dyes were also investigated by powder x-ray diffraction (XRD) and differential scanning calorimetry (DSC), respectively. The methoxy-substituted dyes exhibited neither thermal nor mechano-responsive behavior, however, addition of a longer C alkoxyl chain substituent resulted in stimuli-responsive behavior. The furan and thiophene dodecyloxy-substituted dyes both exhibit high-contrast reversible luminescence switching between crystalline, blue-shifted and amorphous red-shifted emissive states. For the furan dye, gentle heating produced a green emissive form while melting followed by rapid cooling produced an orange emissive form. The thiophene dye, on the other hand, exhibited blue-shifted emission when annealed below its melting temperature and red-shifted emission when smeared with a cotton swab (mechanochromic luminescence). These transformations for both dyes were found to be completely reversible, making them potential candidates for applications requiring reusable, functional materials.

摘要

二氟硼β-二酮(BFbdk)化合物在紫外光激发下表现出固态可切换发光特性。这种特性通常表现为染料薄膜热退火后发射光蓝移,随后因机械剪切(即机械变色发光)而红移。在此,我们报道了带有短甲氧基和长十二烷氧基链取代基的噻吩和呋喃杂环取代染料。在溶液、原始粉末以及纸和玻璃上的薄膜中研究了这些染料的光学性质。还分别通过粉末X射线衍射(XRD)和差示扫描量热法(DSC)研究了染料的结构和热性质。甲氧基取代的染料既不表现出热响应行为也不表现出机械响应行为,然而,添加更长的C烷氧基链取代基则导致刺激响应行为。呋喃和噻吩十二烷氧基取代的染料都在结晶态蓝移发射态和非晶态红移发射态之间表现出高对比度的可逆发光切换。对于呋喃染料,温和加热产生绿色发射形式,而熔融后快速冷却产生橙色发射形式。另一方面,噻吩染料在低于其熔点温度退火时表现出蓝移发射,用棉签涂抹时表现出红移发射(机械变色发光)。发现这两种染料的这些转变都是完全可逆的,这使其成为需要可重复使用的功能材料的应用的潜在候选物。

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