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High-Throughput Evaluation of Olefin Copolymer Composition by Means of Attenuated Total Reflection Fourier Tranform Infrared Spectroscopy

机译:衰减全反射傅里叶变换红外光谱法高通量评估烯烃共聚物的组成

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摘要

As a consequence of developing fully automated reactors for organic and organometallic synthesis and polymerizations combined with rapid on-line analysis, databases, and data mining, the analysis of polymers with respect to composition and properties has been speeded up. High-throughput evaluation of olefin copolymers requires fast measurements and high accuracy without tedious sample preparation such as pressing KBr pellets. This has been achieved by using attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR spectroscopy) in conjunction with multivariate calibration in order to determine the composition of olefin copolymers such as ethene/propene, ethene/1-hexene and ethene/1-octene copolymers.
机译:由于开发了用于有机和有机金属合成和聚合的全自动反应器,并结合了快速的在线分析,数据库和数据挖掘功能,因此加快了聚合物在组成和性能方面的分析速度。烯烃共聚物的高通量评估需要快速的测量和高精度,而无需进行繁琐的样品制备,例如压制KBr粒料。这是通过使用衰减全反射傅立叶变换红外光谱法(ATR-FTIR光谱法)结合多元校准来确定烯烃共聚物(例如乙烯/丙烯,乙烯/ 1-己烯和乙烯/ 1-辛烯)的组成而实现的共聚物。

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