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http://hub.abes.fr/acs/periodical/cmatex/2007/volume_19/issue_5/101021cm0624217/authorship/2
http://hub.abes.fr/acs/periodical/langd5/2003/volume_19/issue_20/101021la0346088/authorship/2
http://hub.abes.fr/acs/periodical/mamobx/2000/volume_33/issue_2/101021ma991528v/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2004/volume_37/issue_14/101021ma049096y/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2001/volume_34/issue_5/101021ma001493v/authorship/2
http://hub.abes.fr/acs/periodical/mamobx/2001/volume_34/issue_17/101021ma010625x/authorship/2
http://hub.abes.fr/acs/periodical/langd5/2006/volume_22/issue_4/101021la053051o/authorship/3
http://hub.abes.fr/acs/periodical/mamobx/1997/volume_30/issue_14/101021ma9704370/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2000/volume_33/issue_7/101021ma991802l/authorship/2
http://hub.abes.fr/acs/periodical/langd5/2004/volume_20/issue_15/101021la0364284/authorship/2
http://hub.abes.fr/acs/periodical/mamobx/2000/volume_33/issue_12/101021ma0001281/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2004/volume_37/issue_1/101021ma035272b/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2004/volume_37/issue_4/101021ma035472n/authorship/3
http://hub.abes.fr/acs/periodical/cmatex/2004/volume_16/issue_26/101021cm0490975/authorship/1
http://hub.abes.fr/acs/periodical/cmatex/2005/volume_17/issue_10/101021cm048196f/authorship/1
http://hub.abes.fr/acs/periodical/langd5/2005/volume_21/issue_21/101021la050836l/authorship/1
http://hub.abes.fr/acs/periodical/mamobx/2004/volume_37/issue_2/101021ma035276g/authorship/1
http://hub.abes.fr/acs/periodical/cmatex/2006/volume_18/issue_26/101021cm061573z/authorship/1
http://hub.abes.fr/acs/periodical/langd5/1999/volume_15/issue_17/101021la990134u/authorship/1
http://hub.abes.fr/acs/periodical/langd5/2002/volume_18/issue_4/101021la010922v/authorship/2
http://hub.abes.fr/acs/periodical/langd5/2007/volume_23/issue_7/101021la063260o/authorship/2
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Reversible Crystal Deformation Observed inthe Main-Chain Type of Liquid CrystallinePolyimide
Liquid-Crystalline Hydrogels. 1. Enhanced Effects of Incorporation ofAcrylic Acid Units on the Liquid-Crystalline Ordering
Fluorinated Water-Swollen Hydrogels with Molecular andSupramolecular Organization
One-Step Formation of Morphologically Controlled Nanoparticles withProjection Coronas
Particulation of Hyperbranched Aromatic BiopolyestersSelf-Organized by Solvent Transformation in Ionic Liquids
Reversible Thermoresponsive Aggregation/Deaggregationof Water-Dispersed Polymeric Nanospheres ExhibitingStructural Transformation
Water-Induced Crystallization of Hydrogels
Liquid Crystalline Hydrogels: Mesomorphic Behavior of AmphiphilicPolyacrylates Bearing Cholesterol Mesogen
Effects of Carboxyls Attached at Alkyl Side Chain Ends on the LamellarStructure of Hydrogels
Self-assembled Soft Nanofibrils of AmphipathicPolypeptides and Their MorphologicalTransformation
Complexation and Crystallization of AnionicPhthalocyanine with Soluble and Cross-LinkedPolycations
Shear-Induced Mesophase Organization ofPolyanionic Rigid Rods in Aqueous Solution
One-Step Advanced Preparation of Surface-Functional PeptideNanospheres by the Polymerization of l-PhenylalanineN-Carboxyanhydride with Dual Initiators
Liquid Crystalline Hydrogels. 2. Effects of Water on the StructuralOrdering
Precise Synthesis of ABA Triblock Copolymers Comprised ofPoly(ethylene oxide) and Poly(β-benzyl-l-aspartate): A HierarchicalStructure Inducing Excellent Elasticity
Mechanically Drawn Hydrogels Uniaxially OrientHydroxyapatite Crystals and Cell Extension
Size-Selective Material Adsorption Property of PolymericNanoparticles with Projection Coronas
Biodegradable LC Oligomers with Cranked Branching Points FormHighly Oriented Fibrous Scaffold for Cytoskeletal Orientation
Thermoresponsive Shrinkage Triggered by Mesophase Transition inLiquid Crystalline Physical Hydrogels
Liquid Crystalline Gels. 4. Water- and Stress-InducedMesophase Transition
Liquid Crystalline Gels. 3. Role of Hydrogen Bonding in the Formationand Stabilization of Mesophase Structures
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