Results: 21
Amirhossein Ghavampoor, Naeimeh Bahri-Laleh, Samahe Sadjadi, Mehdi Nekoomanesh, Amir Vahid, Josep Duran, Maciej Spiegel, Albert Poater
A green approach to synthesize polybutene lubricants from mixed C4 monomers using supported dendritic ionic liquids
Journal of Molecular Liquids, 2024, 412, 125814-
DOI: 10.1016/j.molliq.2024.125814OpenAccess: LinkKeywords: Chemical bonding, Computational chemistry, Joint Exp-Comp, Non-covalent interactions, Organometallics
Nazanin Moeini, Hamidreza Teimoury, Mehrdad Salimi, Naeimeh Bahri-Laleh, Mohammad Joshaghani, Josep Duran, Albert Poater, Sergio Posada-Pérez
Influence of the reaction conditions on the Ziegler-Natta catalyzed ethylene polymerization: Kinetics and properties of the resulting polymers
Polymer, 2024, 293, 126640-
DOI: 10.1016/j.polymer.2023.126640OpenAccess: –Keywords: Chemical bonding, Computational chemistry, Joint Exp-Comp, Reaction mechanisms, Regioselectivite functionalization
Samahe Sadjadi, Neda Abedian-Dehaghani, MajidM. Heravi, Xuemin Zhong, Peng Yuan, Josep Duran, Albert Poater, Naeimeh Bahri-Laleh
Clay-supported acidic ionic liquid as an efficient catalyst for conversion of carbohydrates to 5-hydroxymethylfurfural
Journal of Molecular Liquids, 2023, 382, 121847-
DOI: 10.1016/j.molliq.2023.121847OpenAccess: LinkKeywords: Chemical bonding, Computational chemistry, Non-covalent interactions, Reaction mechanisms, Sustainable Catalysis
Alessandra Cicolella, Massimo C. D’Alterio, Josep Duran, Sílvia Simon, Giovanni Talarico, Albert Poater
Combining Both Acceptorless Dehydrogenation and Borrowing Hydrogen Mechanisms in One System as Described by DFT Calculations
Adv. Theory Simul., 2022, 5, 2100566
DOI: 10.1002/adts.202100566OpenAccess: LinkKeywords: Catalysis, Chemical bonding, Computational chemistry, Reaction mechanisms, Sustainable Catalysis
MdBin Yeamin, Josep Duran, Sílvia Simon, Nikolaos V. Tzouras, Steven P. Nolan, Albert Poater
Unveiling the complexity of the dual gold(I) catalyzed intermolecular hydroamination of alkynes leading to vinylazoles
Mol. Catal., 2022, 518, 112090
DOI: 10.1016/j.mcat.2021.112090OpenAccess: LinkKeywords: Catalysis, Chemical bonding, Computational chemistry, Cycloaddition, Reaction mechanisms
Sílvia Escayola, Jordi Poater, Miguel Ramos, JesúsAntonio Luque-Urrutia, Josep Duran, Sílvia Simon, Miquel Solà, Luigi Cavallo, Steven P. Nolan, Albert Poater
Chelation enforcing a dual gold configuration in the catalytic hydroxyphenoxylation of alkynes
Appl Organomet Chem, 2021, 35, e6362
DOI: 10.1002/aoc.6362OpenAccess: LinkKeywords: Aromaticity, Catalysis, Chemical bonding, Organometallics, Reaction mechanisms
Michele Tomasini, Josep Duran, Sílvia Simon, LuisMiguel Azofra, Albert Poater
Towards mild conditions by predictive catalysis via sterics in the Ru-catalyzed hydrogenation of thioesters
Mol. Catal., 2021, 510, 111692
DOI: 10.1016/j.mcat.2021.111692OpenAccess: LinkKeywords: Catalysis, Chemical bonding, Computational chemistry, Reaction mechanisms, Sustainable Catalysis
Miquel Solà, Miquel Duran, Jordi Poater
The energy components of the extended transition state energy decomposition analysis are path functions: the case of water tetramer
Theor Chem Acc, 2021, 140, 33
DOI: 10.1007/s00214-021-02730-3OpenAccess: –Keywords: Chemical bonding, Density Functional Theory, Method development
Gerard Pareras, Dariusz Wojciech Szczepanik, Miquel Duran, Miquel Solà, Silvia Simon
Tuning the strength of the resonance-assisted hydrogen bond in acenes and phenacenes with twoo -hydroxyaldehyde groups. The importance of topology
J. Org. Chem., 2019, 23, 15538-15548
DOI: 10.1021/acs.joc.9b02526OpenAccess: –Keywords: Aromaticity, Chemical bonding, Density Functional Theory, Electron delocalization
Ouissam El Bakouri, Verònica Postils, Marc Garcia-Borràs, Miquel Duran, Josep M. Luis, Simone Calvello, Alessandro Soncini, Eduard Matito, Ferran Feixas, Miquel Solà
Metal Cluster Electrides: a new Type of Molecular Electrides with Delocalised Polyattractor Character
Chem. Eur. J., 2018, 24, 9853-9859
DOI: 10.1002/chem.201800878OpenAccess: –Keywords: Chemical bonding, Computational chemistry, Density Functional Theory, Electron delocalization, Real-space analysis