Saleemi, Sidra; Aouraghe, Mohamed Amine; Wei, Xiaoxiao; Liu, Wei; Liu, Li; Siyal, M. Irfan; Bae, Jihyun; Xu, Fujun published an article in 2022, the title of the article was Bio-Inspired Hierarchical Carbon Nanotube Yarn with Ester Bond Cross-Linkages towards High Conductivity for Multifunctional Applications.Reference of Pentane-1,5-diol And the article contains the following content:
The cross-linked hierarchical structure in biol. systems provides insight into the development of innovative material structures. Specifically, the sarcoplasmic reticulum muscle is able to transmit elec. impulses in skeletal muscle due to its cross-linked hierarchical tubular cell structure. Inspired by the cross-linked tubular cell structure, we designed and built chem. cross-links between the carbon nanotubes within the carbon nanotube yarn (CNT yarn) structure by an esterification reaction. Consequently, compared with the pristine CNT yarn, its elec. conductivity dramatically enhanced 348%, from 557 S/cm to 1950 S/cm. Furthermore, when applied with three voltages, the electro-thermal temperature of esterified CNT yarn reached 261°C, much higher than that of pristine CNT yarn (175°C). In addition, the esterified CNT yarn exhibits a linear and stable piezo-resistive response, with a 158% enhanced gauge factor (the ratio of elec. resistance changing to strain change ∼1.9). The superconductivity, flexibility, and stable sensitivity of the esterified flexible CNT yarn demonstrate its great potential in the applications of intelligent devices, smart clothing, or other advanced composites. The experimental process involved the reaction of Pentane-1,5-diol(cas: 111-29-5).Reference of Pentane-1,5-diol
The Article related to crosslinked carbon nanotube yarn preparation thermoelec conductivity sarcoplasmic reticulum, bio-inspired, carbon nanotube yarn, electrical properties, esterification, microstructures, smart materials and other aspects.Reference of Pentane-1,5-diol
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