b) 高韧性水凝胶粘接的疲劳裂纹扩展曲线。 赵选贺团队在2019年提出抗疲劳水凝胶材料的设计原理(Sci. Adv., 5, eaau8528 (2019); PNAS 116, 10244 (2019)):让疲劳裂纹在扩展中遇到并且破坏比一层高分子链强韧很多的物质,例如纳米晶域,纳米纤维等,...
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575 26,077 40,275 4,541 66,747 8,352 25,908 2,655 1,976 23,442 8,251 6,485 6,485 3,380 4,187 3,455 838 20,900 2,027 1,602 987 3,165 3,129 4,055 6,460 33,333 33,333 2,955 943 4,082 2,040 47,453 17,501 6,551 14,910 20,463 1,682 834 4.287 4.287 4.285...
Plant cells build nanofibrillar walls that are central to plant growth, morphogenesis and mechanics. Starting from simple sugars, three groups of polysaccharides, namely, cellulose, hemicelluloses and pectins, with very different physical properties are
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[3] Yuk, H., Varela, C. E.,Nabzdyk, C. S., Mao, X., Padera, R. F., Roche, E. T., & Zhao, X. (2019).Dry double-sided tape for adhesion of wet tissues and devices. Nature,575(7781), 169-174. [4] Baumgartner,M., Hartmann, F., Drack, M., Preninger, D., Wirth...
首次提出干燥交联(dry-crosslinking)机理,用于粘合各种潮湿表面(wet adhesion)。发明人体双面胶(tissue double-sided tape),能够在5秒内粘合软湿组织器官和植入设备,并保持长期坚韧、柔软且生物兼容。Nature 575 (7781), 169-174 (2019) 首次提出水凝胶超韧粘结 (tough adhesion)的机理并实现与各种材料的超韧粘结 Na...
[3] Yuk, H., Varela, C. E.,Nabzdyk, C. S., Mao, X., Padera, R. F., Roche, E. T., & Zhao, X. (2019).Dry double-sided tape for adhesion of wet tissues and devices. Nature,575(7781), 169-174. [4] Baumgartner,M., Hartmann, F., Drack, M., Preninger, D., Wirth...
[3] Yuk, H., Varela, C. E.,Nabzdyk, C. S., Mao, X., Padera, R. F., Roche, E. T., & Zhao, X. (2019).Dry double-sided tape for adhesion of wet tissues and devices. Nature,575(7781), 169-174. [4] Baumgartner,M., Hartmann, F., Drack, M., Preninger, D., Wirth...