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Reversible quantitative guest sensing via spin crossover of an iron(ii) triazole

机译:通过三唑铁(ii)的自旋交叉可逆的定量客体传感

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摘要

A new phenyl-triazole-pyrazine ligand, 4-p-tolyl-3-(phenyl)-5-(2-pyrazinyl)-1,2,4-triazole (>tolpzph), was prepared in order to enforce pyrazine coordination of the iron(ii) centre in the resulting complex, [FeII(>tolpzph)2(NCS)2]·THF (>1·THF). Structure determinations carried out on this discrete mononuclear complex, >1·THF, at 273 K (mostly high spin) and 100 K (mostly low spin) demonstrate this was successful, and that spin crossover (SCO) occurred on cooling. Subsequent magnetic measurements on >1·THF revealed that it shows highly sensitive and reversible solvent-dependent SCO, with T1/2(>1·THF) = 255 K vs. T1/2(>1) = 212 K (with SCO of >1 more abrupt and occurring with a 4 K hysteresis loop), a drop of 43 K due to THF loss. This is reversible over at least 10 cycles of re-solvating with THF followed by re-drying, so >1 ↔ >1·THF can be considered an ‘on–off’ THF sensor, monitored by the T1/2 reversibly shifting (by 43 K). Furthermore, quantitative sensing of the fractional amount of THF present in >1·nTHF, 0 ≤ n ≤ 1, is demonstrated. Monitoring the T1/2 and using TGA to quantify n(THF) revealed a linear dependence (25 data points; Pearson r2 = 0.93): T1/2 = 41.1n(THF) + 219. Finally, >1 is also shown to take up CHCl3 [T1/2(>1·CHCl3) = 248 K], with a logarithmic T1/2 dependence on the fractional amount of CHCl3 present (10 data points; Pearson r2 = 0.98): T1/2 = 27.0 log10[n(CHCl3)] + 243. This study is a proof of principle that a (multi-use) quantitative sensor material based on spin crossover is feasible.
机译:制备了一种新的苯基-三唑-吡嗪配体4-对甲苯基-3-(苯基)-5-(2-吡嗪基)-1,2,4-三唑(> tolpzph )。为了在形成的复合物中增强铁(ii)中心的吡嗪配位,[Fe II (> tolpzph )2(NCS)2]·THF(> 1 ·THF)。对这种离散的单核络合物> 1 ·THF进行的结构测定分别在273 K(大部分为高自旋)和100 K(多数为低自旋)下进行,证明了这一点是成功的,并且发生了自旋交叉(SCO)在冷却。随后在> 1 ·THF上进行的磁测量表明,它显示出高度敏感且可逆的溶剂依赖性SCO,T1 / 2(> 1 ·THF)= 255 K vs. T1 / 2(> 1 )= 212 K(SCO突然> 1 ,并出现4 K磁滞回线),由于THF损失而下降了43K。在至少10个用THF重新溶解然后再干燥的循环中,这是可逆的,因此> 1 ↔> 1 ·THF可被视为“开-关” THF传感器,由T1 / 2可逆移动(43 K)监控。此外,还证明了定量检测> 1 ·nTHF(0≤n≤1)中存在的THF分数。监测T1 / 2并使用TGA量化n(THF)显示出线性相关性(25个数据点; Pearson r 2 = 0.93):T1 / 2 = 41.1n(THF)+ 219。 ,也显示> 1 吸收CHCl3 [T1 / 2(> 1 ·CHCl3)= 248 K],对数T1 / 2取决于CHCl3的分数目前(10个数据点; Pearson r 2 = 0.98):T1 / 2 = 27.0 log10 [ n (CHCl3)] +243。此项研究的原理证明是一种基于自旋交叉的(多用途)定量传感器材料是可行的。

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