Double-Chamber Flow Cell for in situ Infrared Spectroscopy Studies of Chemical Reactions in Ziegler-Natta Catalyst Systems
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- Type
- article
- Published
- 1994-08-01
- Cited by
- 13
- References
- 59
- OpenAlex
- https://openalex.org/W2032159242
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94897022
Keywords
Infrared spectroscopy, Chemistry, Catalysis, Chemical reaction, Chemical reactor
References
- In situ FTIR study of n-butane selective oxidation to maleic anhydride on V-P-O catalysts
- Transition metal catalyzed polymerizations : Ziegler-Natta and metathesis polymerizations
- MgCl2‐supported Ziegler‐Natta catalysts: A structural investigation by X‐ray diffraction and Fourier‐transform IR spectroscopy on the chemical activation process through MgCl2‐ethanol adducts
- A study on the states of ethyl benzoate and TiCl4 in MgCl2-supported high-yield catalysts
- The number of active centers in the propylene polymerization with MgCl2/TiCl4/C6H5COOC2H5—Al(C2H5)3/C6H5COOC2H5 Catalyst
- High yield catalysts in olefin polymerization. General outlook on theoretical aspects and industrial uses
- Effect of the internal/external donor pair in high‐yield catalysts for propylene polymerization, 2. Polymerization results
- Polymerization of propene in the presence of MgCl2‐supported Ziegler‐Natta catalysts, 1. The role of ethyl benzoate as “internal” and “external” base
- Infrared spectral characterization of supported propene polymerization catalysts: A link to catalyst performance
- MgCl2-supported Ziegler-Natta catalysts : synthesis and X-ray diffraction characterization of some MgCl2-Lewis base adducts
- Propene polymerization with a magnesium chloride‐supported ziegler catalyst, 1. Principal kinetics
- Solid‐state 13C NMR study on the state of the electron donor in MgCl2‐supported catalysts
- FT-i.r. and Raman spectra of ethyl benzoate. Assignment based on differences between phases, complexation to titanium tetrachloride, isotopic shifts and normal coordinate analysis
- An Infrared Spectroscopy System for Catalytic Reaction at Elevated Pressure and Temperature
- An Infrared Spectroscopic Flow Reactor for in Situ Studies of Heterogeneous Catalytic Reactions at High Temperature and the Reactions of CO2 and Benzyl Benzoate on Alumina
- An infrared method for studying adsorption in situ at the liquid-solid interface
- Force Constants, Infrared Spectrum, and Thermodynamic Properties of TiCl4
- Superactive and stereospecific catalysts. I. Structures and productivity
- Super Active Catalyst for Olefin Polymerization
- Studies on highly active coordination catalysts for polymerization of α-olefins: 3. Polymerization of propylene with MgCl2/TiCl4/AlEt3 or MgCl2/PhCOOC2H5/TiCl4/AlEt3 systems
Cited by
- Investigation of ion pair formation in the triphenylmethyl chloride–trimethyl aluminium system, as a model for the activation of olefin polymerization catalyst
- Stoichiometry and structure of Al(C2H5)3-nClnC6H5COOC2H5 complexes (n = 0–2)
- Structure of MgCl2–TiCl4 complex in co-milled Ziegler–Natta catalyst precursors with different TiCl4 content: Experimental and theoretical vibrational spectra
- In situ FTIR spectroscopy during addition of trimethylaluminium (TMA) to methylaluminoxane (MAO) shows no formation of MAO–TMA compounds
- Experimental and theoretical investigations of the structure of methylaluminoxane (MAO) cocatalysts for olefin polymerization
- Investigation of Planar Ziegler-Natta Model Catalysts Using Attenuated Total Reflection Infrared Spectroscopy
- IR Spectroscopy in Catalysis
- New Insight into Titanium–Magnesium Ziegler–Natta Catalysts Using Photoluminescence Spectroscopy
- Effect of Internal Donors on Raman and IR Spectroscopic Fingerprints of MgCl2/TiCl4 Nanoclusters Determined by Machine Learning and DFT
- Flexible ligands in heterogeneous catalysts for olefin polymerization: Insights from spectroscopy
- MgCl2-Supported Ziegler–Natta Catalysts for Propene Polymerization: Before Activation
- IR spectroscopy in catalysis
- Infrared Spectroscopy
- Experimental and theoretical investigations of the structure of methylaluminoxane (MAO) cocatalysts for olefin polymerization
- In situ FTIR spectroscopy shows no evidence of reaction between MAO and TMA
- Activation Reactions of Cp2 ZrCl2 and Cp2 ZrMe2 with Aluminium Alkyl Type Cocatalysts Studied by in situ FTIR Spectroscopy
- Spectroscopic Fingerprints of MgCl2/TiCl4 Nanoclusters Determined by Machine Learning and DFT
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