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Molecular sensors and switches ^Polymer Matrices for the Extraction of Metals from Seawater

Molecular sensors and switches ^Polymer Matrices for the Extraction of Metals from Seawater
分子传感器和开关^用于从海水中提取金属的聚合物基质
批准号:
2774366
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
引脚交叉是其中具有D4 -D 7构型的某些第一行过渡金属可以在高自旋态和低自旋态之间切换的现象。[1]自旋状态之间的变化可以通过其光学性质的变化来观察,并且可以由外部刺激(例如温度、压力等)触发。由于自旋交叉材料具有切换自旋交叉材料的能力,因此其具有许多应用,例如传感器和分子开关。[2]Fe(II)和(III),其可以形成中性、阳离子和阴离子自旋交叉材料,在文献中存在较少已知的阴离子自旋交叉材料,尽管这些是与材料同等重要的类别。[3]本项目的目标是合成和修饰阴离子自旋交叉材料,并通过修饰其超分子聚集体来增强其自旋交叉材料的性能。表征技术包括PXRD、SCXRD和拉曼光谱。
英文摘要
pin Crossover is the phenomenon in which certain first row transition metals with d4 -d7 configurations can switch between the high and low spin states.[1] The change between spin states can be seen by a change in their optical properties and can be triggered by external stimuli e.g. temperature, pressure etc. Due to there ability to switch spin crossover materials have many applications e.g. sensors and molecular switches.[2] Fe (II) and (III) which can form neutral, cationic and anionic spin crossover materials, in literature there are less known anionic spin crossover materials although these are an equally important class over materials. [3], [4] The aim of this project will be to synthesise and characterise anionic spin crossover materials and to enhance their properties of the spin crossover materials via modification of their supramolecular aggregation. Characterisation techniques would include, PXRD, SCXRD and Raman spectroscopy.
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