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rhodium(i) complex
Person
Class
Person
Publication
Programmes
doc. RNDr. Jan Sedláček Dr.
Academic staff at Faculty of Science
2 study programmes
5 classes
174 publications
Study programme
programme
Macromolecular Chemistry
+1
🇨🇿 PhD. |
Faculty of Science
Classes
class
General chemistry
MC260P119 |
Faculty of Science
class
Macromolecular Chemistry
+1
MC260P121 |
Faculty of Science
class
General Chemistry
MC260P54 |
Faculty of Science
class
Macromolecular Chemistry II
MC260P78 |
Faculty of Science
Publications
publication
Polymerization of 3-Ethynylthiophene with Homogeneous and Heterogeneous Rh Catalysts.
2008 |
Faculty of Science
publication
Bis(u-Carboxylato)dienerhodium(I) Complexes Synthesis, Characterization and Catalytic Activity .
2008 |
Faculty of Science
publication
Preparation and Application of Dinuclear Carboxylate-Bridged Rhodium-Diene Complexes
2006 |
Faculty of Science
publication
Synthesis and Application of Dinuclear Carboxylate Bridged Rhodium Diene Complexes
2006 |
Faculty of Science
publication
Structure, dynamics and Isomerism of Bis[?-(2-methylphenolato)]bis[(?2:?2-cycloocta-1,5-diene)rhodium(I)] Complex
2006 |
Faculty of Science
publication
Functionalized hyper-cross-linked porous homopolymers of ring-substituted 1,3-diethynylbenzenes and their physisorption activity
2024 |
Faculty of Science, Central Library of Charles University
publication
Porous polymer networks cross-linked by novel copper Schiff base complex: From synthesis to catalytic activity
2023 |
Faculty of Science
publication
Combining Polymerization and Templating toward Hyper-Cross-Linked Poly(propargyl aldehyde)s and Poly(propargyl alcohol)s for Reversible H2O and CO2 Capture and Construction of Porous Chiral Networks
2023 |
Faculty of Science
publication
Microporous polymers prepared from non-porous hyper-cross-linked networks by removing covalently attached template molecules
2022 |
Faculty of Science
publication
Microporous Hyper-Cross-Linked Polymers with High and Tuneable Content of Pyridine Units: Synthesis and Application for Reversible Sorption of Water and Carbon Dioxide
2021 |
Faculty of Science
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