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Surface science of single-site heterogeneous olefin polymerization catalysts

机译:单中心非均相烯烃聚合催化剂的表面科学

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摘要

This article reviews the surface science of the heterogeneous olefin polymerization catalysts. The specific focus is on how to prepare and characterize stereochemically specific heterogeneous model catalysts for the Ziegler–Natta polymerization. Under clean, ultra-high vacuum conditions, low-energy electron irradiation during the chemical vapor deposition of model Ziegler–Natta catalysts can be used to create a “single-site” catalyst film with a surface structure that produces only isotactic polypropylene. The polymerization activities of the ultra-high vacuum-prepared model heterogeneous catalysts compare well with those of conventional Ziegler–Natta catalysts. X-ray photoelectron spectroscopic analyses identify the oxidation states of the Ti ions at the active sites. Temperature-programmed desorption distinguishes the binding strength of a probe molecule to the active sites that produce polypropylenes having different tacticities. These findings demonstrate that a surface science approach to the preparation and characterization of model heterogeneous catalysts can improve the catalyst design and provide fundamental understanding of the single-site olefin polymerization process.
机译:本文综述了非均相烯烃聚合催化剂的表面科学。特别关注的是如何为齐格勒-纳塔聚合反应制备和表征立体化学特定的非均相模型催化剂。在干净的超高真空条件下,Ziegler-Natta模型催化剂的化学气相沉积过程中的低能电子辐照可用于形成表面结构仅产生全同立构聚丙烯的“单点”催化剂膜。超高真空制备的非均相催化剂的聚合活性与传统的齐格勒-纳塔催化剂相比具有很好的比较性。 X射线光电子能谱分析确定了活性部位Ti离子的氧化态。程序升温解吸可区分探针分子与产生具有不同立构规整度聚丙烯的活性位点的结合强度。这些发现表明,表面模型方法用于模型非均相催化剂的制备和表征可以改善催化剂设计,并提供对单中心烯烃聚合过程的基本理解。

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