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Philippe Guionneau

Researcher at Centre national de la recherche scientifique

Publications -  186
Citations -  6704

Philippe Guionneau is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Spin crossover & Crystal structure. The author has an hindex of 39, co-authored 177 publications receiving 5987 citations. Previous affiliations of Philippe Guionneau include University of Bordeaux.

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The role of iron(II) dilution in the magnetic and photomagnetic properties of the series [FexZn1−x(bpp)2](NCSe)2

TL;DR: It appears that T(1/2) decreases with the metal dilution while T(LIESST) remains unchanged, and Dilution also tends to decrease the hysteresis width and smooth the transition curves.
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A zinc-sensing glucose-based naphthyl imino conjugate as a detecting agent for inorganic and organic phosphates, including DNA.

TL;DR: This is the first carbohydrate-based receptor system shown to be sensitive towards a cation followed by an anion, including biomolecular systems and to demonstrate the bio-suitability of L.
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Tubular crystals growth for a nanoporous hydrogen-bonded metal–organic framework

TL;DR: In this article, a supramolecular architecture formed by H-bonded assemblage of ditopic bisimidazoliumbenzene cations with anionic metal-oxalate modules shows permanent porosity upon release; the reversible sorption process was accompanied by crystal-to-crystal transformations.
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The Spin‐Crossover Phenomenon at the Coherent‐Domains Scale in 1D Polymeric Powders: Evidence for Structural Fatigability

TL;DR: In this article, the coherent domain morphology was determined for a crystalline powder of the 1D polymeric spin-crossover [Fe(Htrz)2(trz)](BF4), where Htrz = 1H-1,2,4-triazole, trz = deprotonated triazolato(−) ligand.
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Temperature- and Pressure-Induced Switching of the Molecular Spin State of an Orthorhombic Iron(III) Spin-Crossover Salt

TL;DR: In this paper, single-crystal X-ray diffraction, Raman spectroscopy, and magnetic measurements of this orthorhombic polymorph were performed to delineate the spinstate thermo- and piezoswitching in relation to the structural and elastic properties.