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Sébastien Liatard

Researcher at Joseph Fourier University

Publications -  7
Citations -  104

Sébastien Liatard is an academic researcher from Joseph Fourier University. The author has contributed to research in topics: Electrochemical cell & Terpyridine. The author has an hindex of 4, co-authored 6 publications receiving 89 citations.

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Electronic and geometrical manipulation of the excited state of bis-terdentate homo- and heteroleptic ruthenium complexes

TL;DR: This work describes the synthesis and characterization of two new bis-terdentate Ru(II) complexes, a homoleptic complex containing two CNC N-heterocyclic carbene based ligands, whereas compound 2 bears one CNC ligand and an ancillary terpyridine ligand.
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An original electrochemical method for assembling multilayers of terpyridine-based metallic complexes on a gold surface.

TL;DR: A new method based on the electrochemical oxidation of thiols was used to easily generate multilayer assemblies of coordination complexes on a gold surface, and a layer-by-layer nanostructural growth at the surface of the SAMs was induced, presumably due to the electro chemical formation of disulfide bonds.
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Density-functional study of luminescence in polypyridine ruthenium complexes

TL;DR: In this article, a density-functional theory (DFT) study of five ruthenium complexes has been carried out with the goal of gaining deeper insight into factors governing luminescence lifetimes.
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In-situ X-ray tomographic imaging study of gas and structural evolution in a commercial Li-ion pouch cell

TL;DR: In this article , the structural evolution of a 400 mAh commercial Li-ion pouch cell was observed in 4D (3D + time), and subsequent quantification including volume fraction, surface area and thickness showed a heterogeneous gas distribution, revealing the degradation mechanism involving the coalescence of gas.
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Photoinduced Energy vs Electron Transfer Between Fe(II) and Ru(II) Bisterpyridyl Complexes in Solution and Grafted on a Gold Surface

TL;DR: In this paper, a photooxidation of [Fe(ttpy)2]2+ (1) (ttpy = 4′-(4-methylphenyl)-2,2′:6′,2″-terpyridine) has been performed in CH3CN by continuous photolysis experiments in the presence of a diazonium salt (ArN2+) as sacrificial oxidant.