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Patrick Bonnaud @UCkGAxqu3T67_KlGeeBjvR7A@youtube.com

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This channel has been created to provide molecular-scale ins


02:28
[Molecular model] Shearing an aqueous mixture of low molecular-weight polyelectrolytes
13:13
[Talk] Dilatant Properties of Low Molecular-Weight Polyelectrolytes (2021)
22:37
[Molecular Model] Ionic liquid between neutral graphite walls separated by 0.5 nm at 400K
04:15
[Molecular Model] 16 big particles and 784 much smaller ones (2D)
01:16
[Molecular Model] Two dioxide molecules in the vicinity of an iron surface
00:49
[Molecule] tris(pentafluoroethyl) trifluorophosphate, [FAP]
01:00
[Molecular Model] A type-II(C) kerogen molecule equilibrated at 300K and 200 MPa
00:49
[Molecular Model] A type-II(D) kerogen molecule equilibrated at 300K and 200 MPa
00:49
[Molecular Model] Calcium Silicate Hydrate (C-S-H) with C/S=2.00 (1)
00:49
[Molecular Model] Calcium Silicate Hydrate (C-S-H) with C/S=2.06
00:49
[Molecular Model] Porous carbon with a mass density of 1.60 g/cm3
00:49
[Molecular Model] Porous carbon with a mass density of 0.94 g/cm3 (2)
00:49
[Molecular Model] A model of porous carbon with a mass density of 1.00 g/cm3
00:49
[Molecule] 1-butyl-3-methylimidazolium
00:49
[Molecule] Hexafluorophosphate
00:49
[Molecule] bis[(trifluoromethyl)sulfonyl] imide
00:49
[Molecule] 1,3-dimethylimidazolium
00:49
[Molecular Model] Bulk Ionic Liquid of C1C1Im/NTf2 at 300K and 1 atm
00:49
[Molecular Model] A model of porous carbon with a mass density of 0.94 g/cm3
00:49
[Molecular Model] Calcium Silicate Hydrate (C-S-H) with C/S=1.09 (1)
01:44
[Molecular Model] Compression along the z-direction of ZTC filled with water (top view)
01:44
[Molecular Model] Compression along the z-direction of ZTC filled with water (side view)
01:37
[Molecular Model] Zeolite-Templated Carbon (ZTC) generated from a Faujasite template (4)
01:37
[Molecular Model] Zeolite-Templated Carbon (ZTC) using Faujasite as a template (3)
01:37
[Molecular Model] Zeolite-Templated Carbon (ZTC) using Faujasite as a template (2)
00:49
[Molecular Model] Zeolite-Templated Carbon (ZTC) using Faujasite as a template (1)
10:11
[Talk] Interaction grand potential between C-S-H nanoparticles at the molecular level.
00:49
[Molecular Model] Organic Matter: type-III kerogen (A)
00:49
[Molecular Model] Organic matter: type-II kerogen (C)
00:49
[Molecular Model] Organic matter: type-II kerogen (B)
00:49
[Molecular Model] Organic matter: type-II kerogen (A)
00:49
[Molecular Model] Organic matter: Kerogen molecule of type I (A).
00:49
[Molecular Model] Kerogen molecule of type II organic matter series in an overmature stage (D).
00:45
[Molecular Model] Water sorption in silica slit nanopores.
00:49
[Molecular Model] Calcium Silicate Hydrate (C-S-H)
04:27
[Molecular Model] Relaxation of Zeolite-Templated Carbon (ZTC) generated from a Faujasite template 1
02:47
[Molecular Model] Relaxation of Zeolite-Templated Carbon (ZTC) generated from a Faujasite template 2