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首页> 外文期刊>Chemical science >Reactive surface organometallic complexes observed using dynamic nuclear polarization surface enhanced NMR spectroscopy
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Reactive surface organometallic complexes observed using dynamic nuclear polarization surface enhanced NMR spectroscopy

机译:使用动态核极化表面增强NMR光谱观察到的反应性表面有机金属配合物

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Dynamic Nuclear Polarization Surface Enhanced NMR Spectroscopy (DNP SENS) is an emerging technique that allows access to high-sensitivity NMR spectra from surfaces. However, DNP SENS usually requires the use of radicals as an exogenous source of polarization, which has so far limited applications for organometallic surface species to those that do not react with the radicals. Here we show that reactive surface species can be studied if they are immobilized inside porous materials with suitably small windows, and if bulky nitroxide bi-radicals (here TEKPol) are used as the polarization source and which cannot enter the pores. The method is demonstrated by obtaining significant DNP enhancements from highly reactive complelxes [(Si–O–)W(Me)5] supported on MCM-41, and effects of pore size (6.0, 3.0 and 2.5 nm) on the performance are discussed.
机译:动态核极化表面增强NMR光谱(DNP SENS)是一种新兴技术,可从表面访问高灵敏度NMR光谱。但是,DNP SENS通常需要使用自由基作为外源极化源,迄今为止,有机金属表面物种的应用仅限于不与自由基发生反应的那些。在这里,我们表明,如果将反应性表面物质固定在具有适当小窗口的多孔材料内部,并且如果使用庞大的一氧化氮双自由基(此处为TEKPol)作为极化源并且不能进入孔隙,则可以进行研究。通过在MCM-41上负载的高反应性络合物[(Si-O–)W(Me) 5 ]获得显着的DNP增强,证明了该方法的有效性。讨论了尺寸(6.0、3.0和2.5 nm)的性能。

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