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首页> 外文期刊>Angewandte Chemie >Fourier Transform EPR Spectroscopy of Trityl Radicals for Multifunctional Assessment of Chemical Microenvironment
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Fourier Transform EPR Spectroscopy of Trityl Radicals for Multifunctional Assessment of Chemical Microenvironment

机译:三苯甲基自由基的傅里叶变换EPR光谱用于化学微环境的多功能评估

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摘要

Pulse techniques in electron paramagnetic resonance (EPR) allow for a reduction in measurement times and increase in sensitivity but require the synthesis of paramagnetic probes with long relaxation times. Here it is shown that the recently synthesized phosphonated trityl radical possesses long relaxation times that are sensitive to probe the microenvironment, such as oxygenation and acidity of an aqueous solution. In principle, application of Fourier transform EPR (FT-EPR) spectroscopy makes it possible to acquire the entire EPR spectrum of the trityl probe and assess these microenviron-mental parameters within a few microseconds. The performed analysis of the FT-EPR spectra takes into consideration oxygen-, proton-, buffer-, and concentration-induced contributions to the spectral shape, therefore enabling quantitative and discriminative assessment of pH, pO2, and concentrations of the probe and inorganic phosphate.
机译:电子顺磁共振(EPR)中的脉冲技术可减少测量时间并提高灵敏度,但需要合成具有长弛豫时间的顺磁探针。在此表明,最近合成的膦酰基三苯甲基自由基具有长的弛豫时间,该弛豫时间对探测微环境敏感,例如水溶液的氧化和酸度。原则上,傅里叶变换EPR(FT-EPR)光谱的应用使得可以获取三苯甲基探针的整个EPR光谱,并在几微秒内评估这些微环境参数。对FT-EPR光谱进行的分析考虑了氧气,质子,缓冲液和浓度引起的对光谱形状的贡献,因此能够定量和区分性地评估pH,pO2以及探针和无机磷酸盐的浓度。

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