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电子自旋共振中的新技术。

New technologies in electron spin resonance.

作者信息

Freed J H

机构信息

Baker Laboratory of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Annu Rev Phys Chem. 2000;51:655-89. doi: 10.1146/annurev.physchem.51.1.655.

Abstract

New electron spin resonance (ESR) technologies have been developed, which have led to new and improved applications. (a) The development of two-dimensional Fourier transform (FT) ESR required spectrometers providing intense pi/2 microwave pulses of very short (3-5 ns) duration, wide bandwidths, and very short dead times. It has enabled studies that resolve sophisticated details of molecular dynamics in complex fluids. (b) Methods that produce multiple quantum coherences by pulsed ESR now enable accurate measurements of large distances (>12A). (c) One of the most important advances has been the extension of ESR to high magnetic fields and high frequencies. This has benefited from the utilization of quasi-optical methods, especially above 150 GHz. The greatly improved orientational resolution and the faster "snapshot" of motions that are provided by ESR at high frequencies enhance studies of molecular dynamics. The use of both high and lower frequencies enables one to unravel faster and slower modes from the complex dynamics of fluids and macromolecules. (d) The development of FT-ESR imaging required substantial pulsed field gradients lasting only 50-100 ns. ESR imaging is effective in studying diffusion in fluids. Areas for further development are also described.

摘要

新的电子自旋共振(ESR)技术已经得到发展,这带来了新的和改进的应用。(a)二维傅里叶变换(FT)ESR的发展需要光谱仪提供持续时间非常短(3 - 5纳秒)、带宽宽且死时间非常短的强π/2微波脉冲。它使得能够对复杂流体中分子动力学的精细细节进行解析研究。(b)通过脉冲ESR产生多量子相干的方法现在能够精确测量大距离(>12埃)。(c)最重要的进展之一是将ESR扩展到高磁场和高频。这得益于准光学方法的应用,特别是在150吉赫兹以上。高频下ESR提供的大大提高的取向分辨率和更快的运动“快照”增强了对分子动力学的研究。同时使用高频和低频能够从流体和大分子的复杂动力学中解析出快和慢的模式。(d)FT - ESR成像的发展需要持续时间仅为50 - 100纳秒的大幅脉冲场梯度。ESR成像在研究流体中的扩散方面很有效。还描述了进一步发展的领域。

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