E
Eric Gaffet
Researcher at University of Lorraine
Publications - 212
Citations - 6008
Eric Gaffet is an academic researcher from University of Lorraine. The author has contributed to research in topics: Ball mill & Nanocrystalline material. The author has an hindex of 38, co-authored 206 publications receiving 5517 citations. Previous affiliations of Eric Gaffet include Max Planck Society & Centre national de la recherche scientifique.
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Journal ArticleDOI
Hallmarks of mechanochemistry: From nanoparticles to technology
Peter Baláž,Marcela Achimovičová,Matej Baláž,P. Billik,P. Billik,Zara Cherkezova-Zheleva,José M. Criado,Francesco Delogu,Erika Dutková,Eric Gaffet,Francisco J. Gotor,Rakesh Kumar,Ivan Mitov,Tadej Rojac,Mamoru Senna,A. N. Streletskii,A. N. Streletskii,Krystyna Wieczorek-Ciurowa +17 more
TL;DR: The aim of this review article is to provide a comprehensive overview of advances achieved in the field of atomistic processes, phase transformations, simple and multicomponent nanosystems and peculiarities of mechanochemistry.
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High yield fabrication of fluorescent nanodiamonds
Jean-Paul Boudou,Patrick A. Curmi,Fedor Jelezko,Joerg Wrachtrup,P. Aubert,Mohamed Sennour,Gopalakrischnan Balasubramanian,Rolf Reuter,Alain Thorel,Eric Gaffet +9 more
TL;DR: A new fabrication method to produce homogeneously fluorescent nanodiamonds with high yields is described, and the whole fabrication yield of colloidal quasi-spherical nanod diamonds was several orders of magnitude higher than those previously reported starting from microdiamonds.
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The physics of mechanical alloying in a planetary ball mill: Mathematical treatment
TL;DR: In this article, the kinematic equations giving the velocity and acceleration of a ball in a vial in a planetary ball mill are given, the kinetic energy transferred at the collision event, the shock frequency, and the injected shock power are also calculated.
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Crystal-amorphous phase transition induced by ball-milling in silicon
Eric Gaffet,M. Harmelin +1 more
TL;DR: In this article, the first reported crystalamorphous phase transition induced by ball-milling in a pure element: a silicon powder is presented, and the influence of the ballmilling conditions on the dynamic equilibrium between the crystalline and the amorphous phases has been studied.
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X-ray diffraction line profile analysis of iron ball milled powders
TL;DR: In this article, the size of coherently diffracting domains and the lattice strain of iron ball milled powders have been determined according to various models, including the Williamson-Hall plot, the Voigt model and the Warren-Averbach model.