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Activation processes and polyethylene formation on a Phillips model catalyst studied by laser ablation, laser desorption, and static secondary ion mass spectrometry

机译:通过激光烧蚀,激光解吸和静态二次离子质谱研究了在Phillips模型催化剂上的活化过程和聚乙烯的形成

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摘要

Since the discovery of the Phillips catalysts, there still is much uncertainty concerning their activation, their molecular structure, the nature of the active chromium sites, and the polymerization mechanisms. Surface techniques are not easy to be used for such study according to the nonconductive behavior of the support. Therefore, model Phillips catalyst is elaborated by spin coating a trivalent chromium precursor on a silicon wafer. The surface characterization of this model catalyst is conducted by laser ablation mass spectrometry (LA-MS), laser desorption/ionization mass spectrometry (LDI-MS), and static secondary ion mass spectrometry (s-SIMS), at different steps of its preparation. To validate our approach, a comparison is also made between the model and the real Philips catalyst. Moreover, the model catalyst efficiency for polyethylene synthesis is evaluated and allows us to discuss the validity of the mechanisms previously proposed to explain the catalytic process. The characterization of Phillips model catalyst by mass spectrometry allows us to better understand the activation processes of such catalyst. Depending on the activation temperature, chromium oxide species are formed and anchored at the support surface. They consist mainly in mono-chromium sites at high temperature. The chromium valence is hexavalent. This model catalyst is active for the polymerization of ethylene. A pseudo-oligomer molecular weight distribution is observed by LA-MS, whereas s-SIMS allows us to elucidate the anchorage of the polymer at activate chromium surface sites.
机译:自从发现菲利普斯催化剂以来,关于它们的活化,它们的分子结构,活性铬位点的性质以及聚合机理仍然存在很多不确定性。根据载体的非导电性能,不容易将表面技术用于此类研究。因此,通过在硅晶片上旋涂三价铬前驱物来制作菲利普斯模型催化剂。该模型催化剂的表面表征是通过激光烧蚀质谱(LA-MS),激光解吸/电离质谱(LDI-MS)和静态二次离子质谱(s-SIMS)在制备的不同步骤进行的。为了验证我们的方法,还对该模型与实际的Philips催化剂进行了比较。此外,评估了聚乙烯合成的模型催化剂效率,使我们能够讨论先前提出的解释催化过程的机理的有效性。通过质谱对菲利普斯模型催化剂进行表征,使我们能够更好地理解此类催化剂的活化过程。根据活化温度,形成氧化铬物质并将其固定在载体表面上。它们主要由高温下的单铬位点组成。铬价为六价。该模型催化剂对乙烯的聚合反应具有活性。通过LA-MS观察到伪低聚物的分子量分布,而s-SIMS使我们能够阐明聚合物在活化铬表面位点的锚固。

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