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多刺激响应 BODIPY-联苯-苯并二噻吩 TICT 刚性偶极转子的结构-性质关系,其展示出(拟)斯托克斯位移高达 221nm。

Structure-property relationships in multi-stimuli responsive BODIPY-biphenyl-benzodithiophene TICT rigidochromic rotors exhibiting (pseudo-)Stokes shifts up to 221 nm.

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Knowledge City, Sector 81, Punjab-140306, India.

出版信息

Phys Chem Chem Phys. 2020 Nov 18;22(44):25514-25521. doi: 10.1039/d0cp04579a.

DOI:10.1039/d0cp04579a
PMID:33164016
Abstract

Structure-property relationships of donor-π-acceptor (D-π-A) type molecular dyad (pp-AD) and triads (pp-ADA and Me-pp-ADA) based on benzodithiophene and BODIPY with biphenyl spacers have been reported. Rotors pp-AD and pp-ADA showed efficient twisted intramolecular charge transfer (TICT) with near infrared (NIR) emissions at ∼712 nm and ∼725 nm with (pseudo-)Stokes shifts of ∼208 nm and ∼221 nm, respectively, and prominent solvatochromism. A structurally similar triad, Me-pp-ADA, with tetramethyl substituents on the BODIPY core instead was TICT inactive and exhibited excitation energy transfer with a transfer efficiency of ∼88% as revealed using steady state emission and transient absorption measurements. Rotors pp-AD and pp-ADA showed NIR emission with an enhancement in intensity with the addition of water in THF solution as well as a pronounced change in emission intensity with temperature and viscosity variations, which justify their utility as temperature and viscosity sensors. Furthermore, the linear correlation of lifetime with fluorescence intensity ratios of the donor and acceptor justifies the rigidochromic behaviour of these rotors.

摘要

基于苯并二噻吩和 BODIPY 的给体-π-受体(D-π-A)型分子偶联物(pp-AD)和三联体(pp-ADA 和 Me-pp-ADA)的结构-性质关系已经报道。旋转体 pp-AD 和 pp-ADA 表现出高效的扭曲分子内电荷转移(TICT),在近红外(NIR)区域分别发射出约 712nm 和 725nm 的近红外发射,具有约 208nm 和 221nm 的(拟)斯托克斯位移,并且具有明显的溶剂化变色性。结构相似的三联体 Me-pp-ADA 在 BODIPY 核心上具有四个甲基取代基,是 TICT 非活性的,并且通过稳态发射和瞬态吸收测量显示出约 88%的激发能量转移效率。旋转体 pp-AD 和 pp-ADA 在 THF 溶液中随着水的加入表现出近红外发射,强度增强,并且随着温度和粘度的变化,发射强度发生明显变化,这证明了它们作为温度和粘度传感器的实用性。此外,寿命与供体和受体荧光强度比的线性相关性证明了这些旋转体的刚性变色行为。

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