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用于荧光开关应用的二酮吡咯并吡咯-螺吡喃二元化合物的合成与光谱研究

Synthesis and Spectroscopic Investigation of Diketopyrrolopyrrole - Spiropyran Dyad for Fluorescent Switch Application.

作者信息

Doddi Siva, Narayanaswamy K, Ramakrishna Bheerappagari, Singh Surya Prakash, Bangal Prakriti Ranjan

机构信息

Inorganic and Physical Chemistry Division, Indian Institute of Chemical Technology, Uppal Road, Tarnaka, Hyderabad, 500007, India.

Academy of Scientific and Innovative Research (AcSIR), New Delhi, India.

出版信息

J Fluoresc. 2016 Nov;26(6):1939-1949. doi: 10.1007/s10895-016-1886-0. Epub 2016 Aug 4.

Abstract

We report the synthesis and characterization of a new fluorescent dyad SP-DPP-SP(9) via efficient palladium-catalyzed Sonogashira coupling of prop-2-yn-1-yl 3-(3',3'dimethyl-6-nitrospiro[chromene-2,2'-indolin]-1'-yl)propanoatespiropyran, SP(8), a well known photochromic accepter, with 3,6-bis(5-bromothiophen-2-yl)-2,5-bis((R)-2-ethylhexyl)-2,5-dihydropyrrolo[3,4-c]pyrrole-1,4-dione, DPP(4), a highly fluorescent donor. Under visible light exposure the SP unit is in a closed hydrophobic form, whereas under UV irradiation it converts to a polar, hydrophilic open form named Merocyanine (MC), which is responsible for functioning of photo-switch application. The photochemistry pertaining to fluorescence switch, 'on/off' behaviour, of model dyad SP-DPP-SP(9) is experimentally analyzed in solution as well as in solid state in polymer matrices by photoluminescence(PL) and absorption spectroscopy. After absorption of UV light the spiropyran unit of the dyad under goes the rupture of the spiro C-O bond leading to the formation of MC. The absorption band of MC fairly overlaps to the fluorescence of DPP unit resulting quenching of fluorescence via fluorescence resonance energy transfer from exited DPP unit to ground state MC. In contrary, the fluorescence of DPP is fully regained upon transformation of MC to SP by exposure to visible light or thermal stimuli. Hence, the fluorescence intensity of dyad 9 is regulated by reversible conversion among the two states of the photochromic spiropyran units and the fluorescence resonance energy transfer (FRET) between the MC form of SP and the DPP unit. Conversely, these scrutiny of the experiment express that the design of dyad 9 is viable as efficient fluorescent switch molecule in many probable commercial applications, such as, logic gates and photonic and optical communications.

摘要

我们报道了一种新型荧光二元化合物SP-DPP-SP(9)的合成与表征,该化合物通过钯催化的2-丙炔-1-基3-(3',3'-二甲基-6-硝基螺[色烯-2,2'-吲哚啉]-1'-基)丙酸酯螺吡喃(SP(8),一种著名的光致变色受体)与3,6-双(5-溴噻吩-2-基)-2,5-双((R)-2-乙基己基)-2,5-二氢吡咯并[3,4-c]吡咯-1,4-二酮(DPP(4),一种高荧光供体)的有效Sonogashira偶联反应制备而成。在可见光照射下,SP单元处于封闭的疏水形式,而在紫外线照射下,它会转变为极性的、亲水的开放形式,称为部花青(MC),这是光开关应用功能的原因。通过光致发光(PL)和吸收光谱,在溶液以及聚合物基质中的固态下,对模型二元化合物SP-DPP-SP(9)的荧光开关“开/关”行为相关的光化学进行了实验分析。吸收紫外线后,二元化合物的螺吡喃单元发生螺环C-O键的断裂,导致MC的形成。MC的吸收带与DPP单元的荧光相当重叠,通过从激发的DPP单元到基态MC的荧光共振能量转移导致荧光猝灭。相反,通过暴露于可见光或热刺激使MC转变为SP时,DPP的荧光会完全恢复。因此,二元化合物9的荧光强度通过光致变色螺吡喃单元的两种状态之间的可逆转换以及SP的MC形式与DPP单元之间的荧光共振能量转移(FRET)来调节。相反,这些实验研究表明,二元化合物9的设计在许多可能的商业应用中,如逻辑门以及光子和光通信中,作为高效荧光开关分子是可行的。

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