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首页> 外文期刊>Physical Review, A >Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy
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Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy

机译:使用核磁共振光谱法测量分子奇偶校验

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The weak interaction does not conserve parity and therefore induces energy shifts in chiral enantiomers that should in principle be detectable in molecular spectra. Unfortunately, the magnitude of the expected shifts are small and in spectra of a mixture of enantiomers, the energy shifts are not resolvable. We propose a nuclear-magnetic-resonance (NMR) experiment in which we titrate the chirality (enantiomeric excess) of a solvent and measure the diasteriomeric splitting in the spectra of a chiral solute in order to search for an anomalous offset due to parity nonconservation (PNC). We present a proof-of-principle experiment in which we search for PNC in the ~(13)C resonances of small molecules, and use the ~1H resonances, which are insensitive to PNC, as an internal reference.We set a constraint on molecular PNC in ~(13)C chemical shifts at a level of 10~(-5) ppm, and provide a discussion of important considerations in the search for molecular PNC using NMR spectroscopy.
机译:弱相互作用不节省平价,因此诱导手性对映体中的能量变化,其原则上应该在分子光谱中可检测。 遗憾的是,预期变化的大小是对映体的混合物的小和光谱,能量偏移不可分辨。 我们提出了一种核磁共振(NMR)实验,其中我们滴定溶剂(对映体过量)的溶剂(对映体过量),并测量手性溶质光谱中的宿千体分裂,以便由于奇偶校验而导致的异常偏移( PNC)。 我们提出了一个原则上的实验,其中我们在〜(13)C的小分子的共振中搜索PNC,并使用对PNC不敏感的〜1H共振,作为内部参考。我们为此设定了约束 分子PNC In〜(13)C化学位移在10〜( - 5)ppm的水平,并在使用NMR光谱中寻找分子PNC的重要考虑因素。

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