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In Situ Solid-State Reactions Monitored by X-ray Absorption Spectroscopy: Temperature-Induced Proton Transfer Leads to Chemical Shifts

机译:X射线吸收光谱法监测的原位固态反应:温度诱导的质子转移导致化学位移

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摘要

The dramatic colour and phase alteration with the solid-state, temperature-dependent reaction between squaric acid and 4,4'-bipyridine has been probed in situ with X-ray absorption spectroscopy. The electronic and chemical sensitivity to the local atomic environment through chemical shifts in the near-edge X-ray absorption fine structure (NEXAFS) revealed proton transfer from the acid to the bipyridine base through the change in nitrogen protonation state in the high-temperature form. Direct detection of proton transfer coupled with structural analysis elucidates the nature of the solid-state process, with intermolecular proton transfer occurring along an acid-base chain followed by a domino effect to the subsequent acid-base chains, leading to the rapid migration along the length of the crystal. NEXAFS thereby conveys the ability to monitor the nature of solid-state chemical reactions in situ, without the need for a priori information or long-range order.
机译:用X射线吸收光谱原位探测了方酸和4,4'-联吡啶之间固态,温度依赖性反应的显着颜色和相变。通过近边缘X射线吸收精细结构(NEXAFS)中的化学位移,电子和化学对局部原子环境的敏感性揭示了质子通过高温形式的氮质子化状态的变化而从酸向联吡啶碱转移。 。质子转移的直接检测与结构分析一起阐明了固态过程的性质,分子间质子转移沿酸碱链发生,随后发生多米诺效应至随后的酸碱链,导致沿分子链的快速迁移。晶体的长度。因此,NEXAFS能够现场监测固态化学反应的性质,而无需先验信息或远程命令。

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