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段莉洁
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[11] 段莉洁,【SCI通讯】Bio-inspired adhesive and self-healing hydrogels as flexible strain sensors for monitoring human activities.Materials Science & Engineering C,2020:1
[12] 段莉洁,【SCI通讯】Nucleotide-driven skin-attachable hydrogels toward visual human-machine interfaces.Journal of Materials Chemistry A,2020:1
[13] 段莉洁,[SCI通讯]pH-responsive hydrogels based on the self-assembly of short polypeptides for controlled release of peptide and protein drugs.Journal of Polymer Research,2019:1
[14] 段莉洁,【SCI通讯】Protein and Hydrophobic Association-Regulated Hydrogels with Adhesive Adjustability in Different Materials.ADVANCED MATERIALS INTERFACES,2019:1
[15] 段莉洁,【SCI通讯】Mechanically redox-tunable hydrogels reinforced by hydrophobic association and metal ion coordination.MATERIALS CHEMISTRY AND PHYSICS,2018:1
[16] 段莉洁,【SCI通讯】Bioinspired Dynamic Cross-Linking Hydrogel Sensors with Skin-like Strain and Pressure Sensing Behaviors.Chemistry of Materials,2019,31:1
[17] 段莉洁,高阳,王元瑞,高光辉,王元瑞.【SCI通讯】Robust and anti-fatigue hydrophobic association hydrogels assisted by titanium dioxide for photocatalytic activity.Soft Matter,2019,15(19):1
[18] 段莉洁,[SCI通讯]Toughening mechanism of hydrophobic association hydrogels reinforced by latex particles.Macromolecular Materials and Engineering,2019:1
[19] 段莉洁,[SCI通讯]High strength, anti-freezing and strain sensing carboxymethyl cellulosebased organohydrogel.Carbohydrate Polymers,2019:1
[20] 段莉洁,[SCI通讯]Nucleotide-regulated tough and rapidly self-recoverable hydrogels for highly sensitive and durable pressure and strain sensors.Chemistry of Materials,2019:1
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