Rational Design of Asymmetric Polymethines to Attain NIR(II) Bioimaging at >1100 nm

发色团 化学 量子产额 苯甲酸 聚集诱导发射 发射强度 限制 合理设计 产量(工程) 聚合物 波长 带隙 小分子 纳米技术 光化学 光电子学 有机化学 荧光 光学 离子 工程类 物理 冶金 机械工程 材料科学 生物化学
作者
Hsiu-Min Pan,Chi-Chi Wu,Chun-Yi Lin,Chao-Shian Hsu,Yi-Chen Tsai,P. Chowdhury,Chih‐Hsing Wang,Kai‐Hsin Chang,Chieh-Hsuan Yang,Ming-Ho Liu,Yan-Chang Chen,Shih‐Po Su,Yi‐Jang Lee,Huihua Kenny Chiang,Yang‐Hsiang Chan,Pi‐Tai Chou
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:145 (1): 516-526 被引量:52
标识
DOI:10.1021/jacs.2c10860
摘要

Organic molecules having emission in the NIR(II) region are emergent and receiving enormous attention. Unfortunately, attaining accountable organic emission intensity around the NIR(II) region is hampered by the dominant internal conversion operated by the energy gap law, where the emission energy gap and the associated internal reorganization energy λint play key roles. Up to the current stage, the majority of the reported organic NIR(II) emitters belong to those polymethines terminated by two symmetric chromophores. Such a design has proved to have a small λint that greatly suppresses the internal conversion. However, the imposition of symmetric chromophores is stringent, limiting further development of organic NIR(II) dyes in diversity and versatility. Here, we propose a new concept where as far as the emissive state of the any asymmetric polymethines contains more or less equally transition density between two terminated chromophores, λint can be as small as that of the symmetric polymethines. To prove the concept, we synthesize a series of new polymethines terminated by xanthen-9-yl-benzoic acid and 2,4-diphenylthiopyrylium derivatives, yielding AJBF1112 and AEBF1119 that reveal emission peak wavelength at 1112 and 1119 nm, respectively. The quantum yield is higher than all synthesized symmetric polymethines of 2,4-diphenylthiopyrylium derivatives (SC1162, 1182, 1185, and 1230) in this study. λint were calculated to be as small as 6.2 and 7.3 kcal/mol for AJBF1112 and AEBF1119, respectively, proving the concept. AEBF1119 was further prepared as a polymer dot to demonstrate its in vitro specific cellular imaging and in vivo tumor/bone targeting in the NIR(II) region.
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