1. Cat-CrNP as new material with catalytic properties for 2-chloro-2-propen-1-ol and ethylene oligomerizations
- Author
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Jacek Malinowski, Mariusz Urbaniak, Barbara Gawdzik, Artur Sikorski, Przemysław Rybiński, Dagmara Jacewicz, Joanna Drzeżdżon, Adriana Zaleska-Medynska, and Patrycja Parnicka
- Subjects
Ethylene ,Science ,chemistry.chemical_element ,02 engineering and technology ,Crystal structure ,010402 general chemistry ,01 natural sciences ,Article ,Catalysis ,chemistry.chemical_compound ,Chromium ,Polymer chemistry ,Group 2 organometallic chemistry ,Olefin fiber ,Multidisciplinary ,Tetrahydrate ,021001 nanoscience & nanotechnology ,Materials science ,0104 chemical sciences ,Chemistry ,chemistry ,Polymerization ,Medicine ,0210 nano-technology - Abstract
The contemporary search for new catalysts for olefin oligomerization and polymerization is based on the study of coordinating compounds and/or organometallic compounds as post-metallocene catalysts. However known catalysts are suffered by many flaws, among others unsatisfactory activity, requirement of high pressure or instability at high temperatures. In this paper, we present a new catalyst i.e. the crystalline complex compound possesing high catalytic activity in the oligomerization of olefins, such as 2-chloro-2-propen-1-ol and ethylene under very mild conditions (room temperature, 0.12 bar for ethylene oligomerization, atmospheric pressure for 2-chloro-2-propen-1-ol oligomerization). New material - Cat-CrNP ( [nitrilotriacetato - 1,10–phenanthroline]chromium(III) tetrahydrate) has been obtained as crystalline form of the nitrilotriacetate complex compound of chromium(III) with 1,10-phenanthroline and characterized in terms of its crystal structure by the XRD method and by multi-analytical investigations towards its physicochemical propeties The yield of catalytic oligomerization over Cat-CrNP reached to 213.92 g ∙ mmol-1 ∙ h-1∙ bar-1 and 3232 g ∙ mmol-1 ∙ h-1 ∙ bar-1 for the 2-chloro-2-propen-1-ol and ethylene, respectively. Furthemore, the synthesis of Cat-CrNP is cheap, easy to perform and solvents used during preparation are environmentally friendly.
- Published
- 2021
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