Tasuku Nakajima

researcher

Tasuku Nakajima is …
instance of (P31):
humanQ5

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P6178Dimensions author ID0624462764.96
P496ORCID iD0000-0002-2235-3478
P3829Publons author ID2135706
P1053ResearcherIDE-5831-2017

P734family nameNakajimaQ16877753
NakajimaQ16877753
NakajimaQ16877753
P735given nameTasukuQ55642213
TasukuQ55642213
P106occupationresearcherQ1650915

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author (P50)
Q48534320A Facile Method to Fabricate Anisotropic Hydrogels with Perfectly Aligned Hierarchical Fibrous Structures
Q48114344Anisotropic Growth of Hydroxyapatite in Stretched Double Network Hydrogel.
Q53355568Anisotropic tough double network hydrogel from fish collagen and its spontaneous in vivo bonding to bone.
Q59897177Bulk Energy Dissipation Mechanism for the Fracture of Tough and Self-Healing Hydrogels
Q87528035Control superstructure of rigid polyelectrolytes in oppositely charged hydrogels via programmed internal stress
Q53116127Coupled instabilities of surface crease and bulk bending during fast free swelling of hydrogels.
Q93052683Damage cross-effect and anisotropy in tough double network hydrogels revealed by biaxial stretching
Q54246189Double-Network Hydrogels Strongly Bondable to Bones by Spontaneous Osteogenesis Penetration.
Q96112582Double-network gels as polyelectrolyte gels with salt-insensitive swelling properties
Q98729142Effect of the constituent networks of double-network gels on their mechanical properties and energy dissipation process
Q92908900Elastic-Plastic Transformation of Polyelectrolyte Complex Hydrogels from Chitosan and Sodium Hyaluronate
Q57649592Energy-Dissipative Matrices Enable Synergistic Toughening in Fiber Reinforced Soft Composites
Q91915251Hydrophobic Hydrogels with Fruit-Like Structure and Functions
Q45236308Lamellar hydrogels with high toughness and ternary tunable photonic stop-band.
Q53471377Mechano-actuated ultrafast full-colour switching in layered photonic hydrogels.
Q91297071Mechanoresponsive self-growing hydrogels inspired by muscle training
Q57185712Micro Patterning of Hydroxyapatite by Soft Lithography on Hydrogels for Selective Osteoconduction
Q49170593Molecular structure of self-healing polyampholyte hydrogels analyzed from tensile behaviors
Q93263113Network elasticity of a model hydrogel as a function of swelling ratio: from shrinking to extreme swelling states
Q86994344Oppositely charged polyelectrolytes form tough, self-healing, and rebuildable hydrogels
Q86347504Phase-Separation-Induced Anomalous Stiffening, Toughening, and Self-Healing of Polyacrylamide Gels
Q46269953Physical hydrogels composed of polyampholytes demonstrate high toughness and viscoelasticity
Q100758097Polyzwitterions as a Versatile Building Block of Tough Hydrogels: From Polyelectrolyte Complex Gels to Double-Network Gels
Q53638447Proteoglycans and glycosaminoglycans improve toughness of biocompatible double network hydrogels.
Q86146909Quasi-unidirectional shrinkage of gels with well-oriented lipid bilayers upon uniaxial stretching
Q86451147Self-Adjustable Adhesion of Polyampholyte Hydrogels
Q88520702Stretching-induced ion complexation in physical polyampholyte hydrogels
Q57358573Strong and Tough Polyion-Complex Hydrogels from Oppositely Charged Polyelectrolytes: A Comparative Study with Polyampholyte Hydrogels
Q53788516Tough Physical Double-Network Hydrogels Based on Amphiphilic Triblock Copolymers.
Q92930535Tough and Variable-Band-Gap Photonic Hydrogel Displaying Programmable Angle-Dependent Colors
Q59897174Tough polyion-complex hydrogels from soft to stiff controlled by monomer structure

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