M
Mihail Barboiu
Researcher at University of Montpellier
Publications - 257
Citations - 6827
Mihail Barboiu is an academic researcher from University of Montpellier. The author has contributed to research in topics: Membrane & Supramolecular chemistry. The author has an hindex of 44, co-authored 239 publications receiving 5789 citations. Previous affiliations of Mihail Barboiu include University of Victoria & University of Provence.
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Journal ArticleDOI
Applications to water transport systems: general discussion
Marc Baaden,Mihail Barboiu,Manash Pratim Borthakur,Chun-Long Chen,Rob D. Coalson,Jeffery T. Davis,Viatcheslav Freger,Bing Gong,Claus Hélix-Nielsen,Robert J. Hickey,Bruce J. Hinds,Wisit Hirunpinyopas,Andreas Horner,Jun li Hou,Gerhard Hummer,Pawin Iamprasertkun,Kinbara Kazushi,Manish Kumar,Yves-Marie Legrand,Mahesh Lokesh,Baoxia Mi,Sushanta K. Mitra,Samuel Murail,Aleksandr Noy,Suzana Pereira Nunes,Peter Pohl,Qilei Song,Woochul Song,Susanna Törnroth-Horsefield,Harish Vashisth +29 more
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"Calix[4]-box" cages promote the formation of amide bonds in water in the absence of coupling reagents.
Weixu Feng,Liya Dai,Shao-Ping Zheng,Arie van der Lee,Cheng-Yong Su,Mihail Barboiu,Mihail Barboiu +6 more
TL;DR: It is shown that encapsulation can be used to promote amide bond formation in water under mild conditions, in the absence of carbodiimide coupling agents.
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Mesomeric metallosupramolecular grid architectures
TL;DR: In this paper, the self-assembly process of metallosupramolecular grids is described, involving bis-bidentate ligand 1, based on imino-pyridine complexation subunits and tetrahedrally (Cu+, Ag+) and octahedrically (Co2+, Zn2+, Fe2+) coordinated metal ions.
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Molecular and Supramolecular Dynamics ‐ a Versatile Tool for Self‐Organization of Polymeric Membranes Systems
TL;DR: In this article, self-organization properties in the membrane phase may provide the first evidence for the possible hybrid transport carrier vs. channel mechanisms in correlation with self-assembly properties of the heteroditopic receptors.
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Ion-fuelled L-Phenylalanine controlled pumping by hybrid membrane materials
TL;DR: In this article, an organic-inorganic membrane material for controlled translocation of ion-pairs along directional conduction pathways has been reported, where the supramolecular/sol-gel combined procedure has been realised in two steps.