首页> 外文期刊>Journal of Applied Crystallography >Application of in situ vapor sorption small-angle neutron scattering (SANS) to semicrystalline polymers: vapor pathway and structure evolution in semicrystalline linear polyethylene
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Application of in situ vapor sorption small-angle neutron scattering (SANS) to semicrystalline polymers: vapor pathway and structure evolution in semicrystalline linear polyethylene

机译:原位蒸气吸附小角中子散射(SANS)在半结晶聚合物中的应用:半结晶线性聚乙烯中的蒸气通道和结构演变

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摘要

SANS has not been successfully applied to study the structure of semicrystalline polyolefins without deuterated polymers because of the fundamental limitation of negligible contrast between the crystalline and amorphous phases in spite of the mass density difference. The proposed in situ vapor sorption SANS technique circumvents this limitation and enables structural changes to be studied quantitatively with sorption of a contrast-generating vapor. The results verify the long-standing assumption that vapor selectively diffuses into the amorphous regions of semicrystalline polyethylenes. The proposed technique makes it possible to correlate the structure, sorption isotherm and diffusion coefficient, which is not possible using conventional gravimetric methods.
机译:由于质量密度差异,尽管结晶相和无定形相之间的对比度可忽略不计,但SANS尚未成功应用于没有氘化聚合物的半结晶聚烯烃的结构研究。拟议中的原位蒸汽吸附SANS技术规避了这一限制,并使结构变化能够通过吸收产生对比的蒸汽进行定量研究。结果证实了长期存在的假设,即蒸气选择性地扩散到半结晶聚乙烯的无定形区域中。所提出的技术可以使结构,吸附等温线和扩散系数相关联,而这是使用常规重量分析法无法实现的。

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