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Titlebook: Assessing the Functional Structure of Molecular Transporters by EPR Spectroscopy; Matthias J.N.Junk Book 2012 Springer-Verlag Berlin Heide

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Thermoresponsive Spin-Labeled Hydrogels as Separable DNP Polarizing Agents,ons in magnetic resonance imaging. Thus, an efficient separation of the polarization agent is a key requirement for possible applications in medicine. In this chapter, the application of spin-labeled thermoresponsive hydrogels as polarizing agents for dynamic nuclear polarization is explored.
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Book 2012cules capable of transporting small molecules. Replacing the latter with stable radicals, he uses state-of-the-art electron paramagnetic resonance (EPR) spectroscopy to describe the highly relevant transport function from the viewpoint of the guest molecules. Such, he demonstrates that the functiona
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Sustainability and a Planetary Dietons in magnetic resonance imaging. Thus, an efficient separation of the polarization agent is a key requirement for possible applications in medicine. In this chapter, the application of spin-labeled thermoresponsive hydrogels as polarizing agents for dynamic nuclear polarization is explored.
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Nano-Inhomogeneities in Structure and Reactivity of Thermoresponsive Hydrogels,PR spectroscopy. Via addition of paramagnetic tracer molecules, so-called spin probes, the thermally induced collapse is monitored on the molecular scale and is found to proceed over a substantially broader temperature range than indicated by the sharp macroscopic volume transition.
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Matthias J.N.JunkNominated by Max-Planck-Institute for Polymer Research, Mainz, Germany.Innovative approach to assess the topic.Delivers remarkable new insights into materials.Includes supplementary material:
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Springer Theseshttp://image.papertrans.cn/b/image/163312.jpg
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Assessing the Functional Structure of Molecular Transporters by EPR Spectroscopy978-3-642-25135-1Series ISSN 2190-5053 Series E-ISSN 2190-5061
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https://doi.org/10.1007/978-981-16-7707-6PR spectroscopy. Via addition of paramagnetic tracer molecules, so-called spin probes, the thermally induced collapse is monitored on the molecular scale and is found to proceed over a substantially broader temperature range than indicated by the sharp macroscopic volume transition.
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