在創(chuàng)制最佳導(dǎo)體的競(jìng)賽中,研究人員發(fā)現(xiàn)了一種新的技術(shù):將分層的碳納米管片材沿著拉伸的纖維芯排列,這樣便可制造出一種功效大得多但又柔性的導(dǎo)電材料。這種材料的潛力對(duì)從改善起搏器的導(dǎo)聯(lián)和發(fā)光顯示器到電池和超級(jí)電容器等都具有廣泛的意義。制造一種有著高度彈性但又能在扭曲時(shí)維持高水平導(dǎo)電性的導(dǎo)電材料一直富有挑戰(zhàn)性——現(xiàn)有的使用不同納米纖維、石墨烯、纖維和橡膠的材料常常無(wú)法做到這一點(diǎn)。然而,通過(guò)拉伸橡膠纖維芯達(dá)1400%左右并接著將一個(gè)平行碳納米管鞘與拉緊的芯對(duì)齊,Liu和同事可極大地改善這些材料的導(dǎo)電性。這種方法可給出一個(gè)可觀的拉伸-導(dǎo)電比率,當(dāng)這種材料被拉伸1000%時(shí),其導(dǎo)電性的降幅還不到5%。該團(tuán)隊(duì)通過(guò)制造一種更為復(fù)雜的使用第二層橡膠的材料組合將這一技術(shù)又推進(jìn)了一步。它能在組合材料內(nèi)允許有高度的扭曲,而這種組合材料可被用來(lái)控制人造肌肉的運(yùn)動(dòng)。通過(guò)制造顯著更為有效的材料,這一研究或能對(duì)未來(lái)的醫(yī)療設(shè)備、光學(xué)元件、機(jī)器人能力及更多領(lǐng)域帶來(lái)重大影響。由Tushar Ghosh 撰寫的一篇《視角》文章對(duì)這項(xiàng)新技術(shù)提出了更多的見(jiàn)解。
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Article #11: 'Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles,' by Z. Liu; S. Fang; F.A. Moura; N. Jiang; J. Di; X. Lepró; C.S. Haines; R. Zhang; X. Wang; M.D. Lima; D. Qian; H. Lu; R.H. Baughman at University of Texas at Dallas in Richardson, TX; Z. Liu; J. Ding; N. Yuan; R. Wang; W. Lv; C. Dong; M. Chen; Q. Yin at Changzhou University in Changzhou, China; Z. Liu; S. Fang; N. Jiang; N. Yuan; S. Yin; D.W. Lee; R. Wang; H. Wang; W. Lv; C. Dong; R. Zhang; M. Chen; Q. Yin; Y. Chong; R.H. Baughman at Jiangnan Graphene Research Institute in Changzhou, China; F.A. Moura; D.S. Galv?o at State University of Campinas in Campinas, Brazil; M. Zhang at Florida State University in Tallahassee, FL; S. Yin; H. Wang; R. Zhang at Tianjin University of Technology in Tianjin, China; R. Zhang at Northwestern Polytechnical University in Xi’an, China; R. Ovalle-Robles at Lintec of America, Nano-Science and Technology Center in Richardson, TX; J. Ding at Jiangsu University in Zhenjiang, China.(EurekAlert)
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