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自旋交叉和高自旋铁(II)配合物作为化学位移F磁共振温度计。

Spin-crossover and high-spin iron(ii) complexes as chemical shift F magnetic resonance thermometers.

作者信息

Thorarinsdottir Agnes E, Gaudette Alexandra I, Harris T David

机构信息

Department of Chemistry , Northwestern University , 2145 Sheridan Road , Evanston , IL 60208-3113 , USA . Email:

出版信息

Chem Sci. 2017 Mar 1;8(3):2448-2456. doi: 10.1039/c6sc04287b. Epub 2017 Jan 6.

Abstract

The potential utility of paramagnetic transition metal complexes as chemical shift F magnetic resonance (MR) thermometers is demonstrated. Further, spin-crossover Fe complexes are shown to provide much higher temperature sensitivity than do the high-spin analogues, owing to the variation of spin state with temperature in the former complexes. This approach is illustrated through a series of Fe complexes supported by symmetrically and asymmetrically substituted 1,4,7-triazacyclononane ligand scaffolds bearing 3-fluoro-2-picolyl derivatives as pendent groups (L ). Variable-temperature magnetic susceptibility measurements, in conjunction with UV-vis and NMR data, show thermally-induced spin-crossover for [Fe(L)] in HO, with = 52(1) °C. Conversely, [Fe(L)] remains high-spin in the temperature range 4-61 °C. Variable-temperature F NMR spectra reveal the chemical shifts of the complexes to exhibit a linear temperature dependence, with the two peaks of the spin-crossover complex providing temperature sensitivities of +0.52(1) and +0.45(1) ppm per °C in HO. These values represent more than two-fold higher sensitivity than that afforded by the high-spin analogue, and 40-fold higher sensitivity than diamagnetic perfluorocarbon-based thermometers. Finally, these complexes exhibit excellent stability in a physiological environment, as evidenced by F NMR spectra collected in fetal bovine serum.

摘要

顺磁性过渡金属配合物作为化学位移磁共振(MR)温度计的潜在效用得到了证明。此外,自旋交叉铁配合物显示出比高自旋类似物更高的温度敏感性,这是由于前者配合物中自旋态随温度变化。通过一系列由对称和不对称取代的1,4,7-三氮杂环壬烷配体支架支撑的铁配合物来说明这种方法,这些支架带有3-氟-2-吡啶甲基衍生物作为侧基(L)。变温磁化率测量结合紫外可见光谱和核磁共振数据表明,[Fe(L)]在水中存在热诱导自旋交叉,转变温度为52(1)℃。相反,[Fe(L)]在4-61℃温度范围内保持高自旋状态。变温氟核磁共振光谱显示,配合物的化学位移呈现线性温度依赖性,自旋交叉配合物的两个峰在水中每摄氏度的温度敏感性分别为+0.52(1)和+0.45(1) ppm。这些值表示的灵敏度比高自旋类似物高出两倍多,比基于全氟碳的抗磁性温度计高出40倍。最后,这些配合物在生理环境中表现出优异的稳定性,这一点由在胎牛血清中收集的氟核磁共振光谱所证明。

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