Spider silk with weaker bonding resulting in higher strength and toughness through progressive unfolding and load transfer

  • Kim, Yoonjung
  • Choi, Hyunsung
  • Baek, Inchul
  • Na, Sungsoo
Citations

WEB OF SCIENCE

19
Citations

SCOPUS

20

초록

The superior mechanical properties of silk is known to come partly from its hydrogen bonds, which is determined by its amino acid sequences. Hydrogen bonds are one of the main sources of strength of silk fiber, yet the toughest silk fibers have amino acids sequences that results in lesser number of hydrogen bonds than other silk fibers. In this work, we show how such silk fiber with lower number of hydrogen bonds may result in fiber with higher toughness by investigating the process of how hydrogen bond characteristics of silk are translated into its mechanical properties. From the tensile pulling tests via molecular dynamics simulations on silk fiber with varying number of hydrogen bonds, the mechanism of how weaker bonded silk results in higher strength and toughness by synergic effect with the characteristic progressive unfolding and load transfer of silk fiber is explained. The results provide new perspectives on how silk and other fibers should be designed to achieve higher toughness.

키워드

Spider silkMolecular dynamics simulationHydrogen bondAmino acid sequenceMaterial designBETA-SHEET CRYSTALSMECHANICAL-PROPERTIESDRAGLINE SILKMOLECULAR-MECHANICSBEHAVIORLENGTHSUPERCONTRACTIONNANOCONFINEMENTDIVERSITYSEQUENCE
제목
Spider silk with weaker bonding resulting in higher strength and toughness through progressive unfolding and load transfer
저자
Kim, YoonjungChoi, HyunsungBaek, InchulNa, Sungsoo
DOI
10.1016/j.jmbbm.2020.103773
발행일
2020-08
유형
Article
저널명
Journal of the Mechanical Behavior of Biomedical Materials
108