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Surface Investigation and Morphological Analysis of Structurally Disordered MgCl2 and MgCl2/TiCl4 Ziegler-Natta Catalysts

机译:结构无序的MgCl2和MgCl2 / TiCl4齐格勒-纳塔催化剂的表面研究和形态分析

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Activated MgCl2 nanocrystals were prepared by controlled dealcoholation of the MgCl2 center dot 6CH(3)OH adduct, mimicking the routinely adopted methods to synthesize industrial heterogeneous Ziegler Natta catalysts. The effect of the alcohol in driving the morphology of MgCl2 crystals, i.e., the type and extension of the exposed surfaces, was investigated by integrating a detailed structural, morphological, and surface characterization with a state-of-the-art computational modeling. FT-IR spectroscopy of CO adsorbed at 100 K emerged as a feasible, simple, and powerful method to characterize the surface of structurally disordered MgCl2 and MgCl2-based Ziegler Natta catalysts. Our computational morphological analysis revealed that the (012), (015), and (110) surfaces are highly stabilized donor, especially at the temperature typically adopted in the preparation of the precatalysts. FT-IR spectroscopy of adsorbed CO allows distinguishing these surfaces from the other penta-coordinated ones and provides a clear experimental evidence that TiCl4 binds to the (110) and (015) surfaces. The (015) surface was never considered in the past and is characterized by an unusual flexibility in the presence of adsorbates, which detach the Mg cations from the Cl underneath, leaving a coordination vacancy available for the binding of asymmetric titanium sites. Since the recent literature identified a tetra-coordinated Mg as a site of election for the deposition of the Ti species relevant in olefin polymerization, the presence of two eligible Mg sites for Ziegler Natta catalysis is highly interesting.
机译:通过控制MgCl2中心点6CH(3)OH加合物的脱醇反应来制备活化的MgCl2纳米晶体,模仿常规采用的方法来合成工业非均相齐格勒纳塔催化剂。通过将详细的结构,形态和表面表征与最新的计算模型相结合,研究了醇在驱动MgCl2晶体形态(即裸露表面的类型和延伸)方面的作用。以100 K吸附的CO的FT-IR光谱法是表征结构无序MgCl2和MgCl2基齐格勒纳塔催化剂表面的一种可行,简单且功能强大的方法。我们的计算形态分析表明,(012),(015)和(110)表面是高度稳定的给体,尤其是在制备前催化剂时通常采用的温度下。吸附的CO的FT-IR光谱可将这些表面与其他五配位的表面区分开,并提供清晰的实验证据,证明TiCl4结合至(110)和(015)表面。过去从未考虑过(015)表面,其特征是在存在被吸附物的情况下具有异常的柔韧性,该吸附物将Mg阳离子从下面的Cl中分离出来,从而留下了可用于结合不对称钛位点的配位空位。由于最近的文献将四配位的Mg确定为与烯烃聚合相关的Ti物种沉积的选择位点,因此非常有意思的是存在两个合格的Mg位用于齐格勒·纳塔催化。

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