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中位吡咯基硼二吡咯亚甲基的合成、结构以及光谱、电化学和氟离子传感性能

Synthesis, structure, and spectral, electrochemical and fluoride sensing properties of meso-pyrrolyl boron dipyrromethene.

作者信息

Umasekhar Booruga, Ganapathi Emandi, Chatterjee Tamal, Ravikanth Mangalampalli

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Mumbai 400 076, India.

出版信息

Dalton Trans. 2015 Oct 7;44(37):16516-27. doi: 10.1039/c5dt02634b.

Abstract

meso-Pyrrolyl boron dipyrromethene (BODIPY) was prepared under simple reaction conditions by using commercially available chemicals. Prior to this work, the BODIPY compound was prepared in multiple steps by using precursors which were not readily available. The X-ray structure of BODIPY revealed that the meso-pyrrole ring is tilted towards the BF2-dipyrrin moiety with a dihedral angle of 33.94°. The reactivity of the meso-pyrrole ring of BODIPY was tested by subjecting it to bromination and formylation reactions, which afforded (α-bromopyrrolyl) BODIPY and (α-formylpyrrolyl) BODIPY in decent yields. The (α-formylpyrrolyl) BODIPY was used to prepare the pyrrole bridged BODIPY dyad. The pyrrole bridged BODIPY dyad exhibited a 15-20 nm bathochromic shift in the absorption band and was weakly fluorescent compared to meso-pyrrolyl BODIPY. Furthermore, our studies show that the meso-pyrrolyl BODIPY can be used as a specific sensor for F(-) ions because of the presence of meso-pyrrole NH which is involved in interactions with F(-) ions. To prove that meso-pyrrole NH is involved in sensing F(-) ions, we also prepared meso-(N-methylpyrrolyl)-BODIPY and characterized it by various spectroscopic techniques and crystallography. Our studies reveal that meso-(N-methylpyrrolyl)-BODIPY does not sense F(-) ions, supporting the involvement of meso-pyrrole NH in sensing F(-) ions.

摘要

通过使用市售化学品,在简单的反应条件下制备了中位-吡咯基硼二吡咯亚甲基(BODIPY)。在这项工作之前,BODIPY化合物是通过使用不易获得的前体分多步制备的。BODIPY的X射线结构表明,中位-吡咯环向BF2-二吡咯部分倾斜,二面角为33.94°。通过对BODIPY的中位-吡咯环进行溴化和甲酰化反应来测试其反应活性,反应以相当不错的产率得到了(α-溴代吡咯基)BODIPY和(α-甲酰基吡咯基)BODIPY。(α-甲酰基吡咯基)BODIPY用于制备吡咯桥连的BODIPY二元体。吡咯桥连的BODIPY二元体在吸收带中表现出15 - 20纳米的红移,并且与中位-吡咯基BODIPY相比荧光较弱。此外,我们的研究表明,由于存在参与与F(-)离子相互作用的中位-吡咯NH,中位-吡咯基BODIPY可以用作F(-)离子的特异性传感器。为了证明中位-吡咯NH参与传感F(-)离子,我们还制备了中位-(N-甲基吡咯基)-BODIPY,并通过各种光谱技术和晶体学对其进行了表征。我们的研究表明,中位-(N-甲基吡咯基)-BODIPY不传感F(-)离子,这支持了中位-吡咯NH参与传感F(-)离子的观点。

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