Functional and Highly Spatially Resolved ESR Imaging


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DRESCHER, Malte, 2005. Functional and Highly Spatially Resolved ESR Imaging. In: Australian Journal of Chemistry. 58(1), pp. 26-28. ISSN 0004-9425. eISSN 1445-0038. Available under: doi: 10.1071/CH04235

@article{Drescher2005Funct-40154, title={Functional and Highly Spatially Resolved ESR Imaging}, year={2005}, doi={10.1071/CH04235}, number={1}, volume={58}, issn={0004-9425}, journal={Australian Journal of Chemistry}, pages={26--28}, author={Drescher, Malte} }

Electron spin resonance imaging is a technique using similar principles to the established nuclear magnetic resonance imaging; however, the very fast electron-spin relaxation time constants of the former are an experimental challenge. In order to obtain T<sub>2</sub>-weighted as well as functional images spatially resolved in the micrometer range, we use temperature-dependent pulsed X-band ESR and the back-projection reconstruction method. We present here recent results of our imaging project focussing on quasi one-dimensional organic conductors, where even pulsed conduction electron-spin resonance is possible. Drescher, Malte Drescher, Malte Functional and Highly Spatially Resolved ESR Imaging 2005 2017-09-21T14:30:59Z eng 2017-09-21T14:30:59Z

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