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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Weighing synthetic polymers of ultra-high molar mass and polymeric nanomaterials: What can we learn from charge detection mass spectrometry?
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Weighing synthetic polymers of ultra-high molar mass and polymeric nanomaterials: What can we learn from charge detection mass spectrometry?

机译:称重超高摩尔质量和聚合物纳米材料的合成聚合物:我们可以从充电检测质谱中学到什么?

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摘要

Advances in soft ionization techniques for mass spectrometry (MS) of polymeric materials make it possible to determine the masses of intact molecular ions exceeding megadaltons. Interfacing MS with separation and fragmentation methods has additionally led to impressive advances in the ability to structurally characterize polymers. Even if the gap to the megadalton range has been bridged by MS for polymers standards, the MS-based analysis for more complex polymeric materials is still challenging. Charge detection mass spectrometry (CDMS) is a single-molecule method where the mass and the charge of each ion are directly determined from individual measurements. The entire molecular mass distribution of a polymer sample can be thus accurately measured. Described in this perspective paper is how molecular weight distribution as well as charge distribution can provide new insights into the structural and compositional studies of synthetic polymers and polymeric nanomaterials in the megadalton to gigadalton range of molecular weight. The recent multidimensional CDMS studies involving couplings with separation and dissociation techniques will be presented. And, finally, an outlook for the future avenues of the CDMS technique in the field of synthetic polymers of ultra-high molar mass and polymeric nanomaterials will be provided.
机译:聚合物材料质谱(MS)的软电离技术的进展使得可以确定超过兆塔尔顿的完整分子离子的质量。具有分离和碎片方法的接口MS另外导致在结构表征聚合物的能力中令人印象深刻的进展。即使MEGADALTON系列的差距已经被MS桥接到聚合物标准,即更复杂的聚合物材料的基于MS的分析仍然具有挑战性。电荷检测质谱(CDMS)是单分子方法,其中每种离子的质量和电荷直接从单独的测量中确定。因此可以精确地测量聚合物样品的整个分子量分布。在本透视纸中描述的是分子量分布以及电荷分布的方式,可以为梅加尔顿的合成聚合物和聚合物纳米材料的结构和组成研究提供新的见解,以分子量的Gigadalton范围。最近涉及具有分离和解离技术的联轴器的多维CDMS研究。最后,将提供在超高摩尔质量和聚合物纳米材料的合成聚合物领域的CDMS技术的未来途径的前景。

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