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一种荧光检测的配位诱导自旋态开关。

A Fluorescence-Detected Coordination-Induced Spin State Switch.

机构信息

Inorganic Chemistry IV, University of Bayreuth, Universitätsstraße 30, NW I, 95447 Bayreuth, Germany.

Soft Matter Optoelectronics, University of Bayreuth, Universitätsstraße 30, NW I, 95447 Bayreuth, Germany.

出版信息

J Am Chem Soc. 2021 Mar 10;143(9):3466-3480. doi: 10.1021/jacs.0c12568. Epub 2021 Feb 26.

Abstract

The response of the spin state to variation of the coordination number (CISSS) is a promising and viable approach to smart sensor materials, yet it suffers to date from insensitive detection. Herein, we present the synthetic access to a family of planar nickel(II) complexes, whose CISSS is sensitively followed by means of fluorescence detection. For this purpose, nickel(II) complexes with four phenazine-based Schiff base-like ligands were synthesized and characterized through solution-phase spectroscopy (NMR and UV-vis), solid-state structure analysis (single-crystal XRD), and extended theoretical modeling. All of them reveal CISSS in solution through axial ligating a range of N- and O-donors. CISSS correlates nicely with the basicity of the axial ligand and the substitution-dependent acidity of the nickel(II) coordination site. Remarkably, three out of the four nickel(II) complexes are fluorescent in noncoordinating solvents but are fluorescence-silent in the presence of axial ligands such as pyridine. As these complexes are rare examples of fluorescent nickel(II) complexes, the photophysical properties with a coordination number of 4 were studied in detail, including temperature-dependent lifetime and quantum yield determinations. Most importantly, fluorescence quenching upon adding axial ligands allows a "black or white", i.e. digital, sensoring of spin state alternation. Our studies of fluorescence-detected CISSS (FD-CISSS) revealed that absorption-based CISSS and FD-CISSS are super proportional with respect to the pyridine concentration: FD-CISSS features a higher sensitivity. Overall, our findings indicate a favored ligation of these nickel(II) complexes in the excited state in comparison to the ground state.

摘要

自旋态对配位数变化(CISSS)的响应是智能传感器材料很有前途和可行的方法,但迄今为止,其检测灵敏度仍不高。在此,我们介绍了一系列平面镍(II)配合物的合成途径,通过荧光检测可以灵敏地跟踪其 CISSS。为此,我们合成了四个基于吩嗪的席夫碱类似物的镍(II)配合物,并通过溶液相光谱(NMR 和 UV-vis)、固态结构分析(单晶 XRD)和扩展的理论建模对其进行了表征。所有这些配合物在溶液中都通过轴向配位一系列 N 和 O 供体来实现 CISSS。CISSS 与轴向配体的碱度以及镍(II)配位位的取代相关的酸度密切相关。值得注意的是,四个镍(II)配合物中有三个在非配位溶剂中是荧光的,但在存在轴向配体如吡啶时则是荧光沉默的。由于这些配合物是荧光镍(II)配合物的罕见例子,因此详细研究了配位数为 4 的光物理性质,包括温度依赖性寿命和量子产率的测定。最重要的是,添加轴向配体后荧光猝灭允许对自旋态交替进行“黑或白”,即数字传感。我们对荧光检测 CISSS(FD-CISSS)的研究表明,基于吸收的 CISSS 和 FD-CISSS 与吡啶浓度呈超比例关系:FD-CISSS 的灵敏度更高。总体而言,我们的研究结果表明,与基态相比,这些镍(II)配合物在激发态中更倾向于配位。

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