Biscrolling Nanotube Sheets and Functional Guests into Yarns
纳米管
纳米技术
材料科学
业务
碳纳米管
作者
Márcio D. Lima,Shaoli Fang,Xavier Lepró,Chihye Lewis,Raquel Ovalle‐Robles,Javier Carretero‐González,Elizabeth Castillo–Martínez,Mikhail E. Kozlov,Jiyoung Oh,Neema Rawat,Carter S. Haines,Mohammad H. Haque,Vaishnavi Aare,Stephanie Stoughton,Anvar Zakhidov,Ray H. Baughman
出处
期刊:Science [American Association for the Advancement of Science (AAAS)] 日期:2011-01-07卷期号:331 (6013): 51-55被引量:347
Multifunctional applications of textiles have been limited by the inability to spin important materials into yarns. Generically applicable methods are demonstrated for producing weavable yarns comprising up to 95 weight percent of otherwise unspinnable particulate or nanofiber powders that remain highly functional. Scrolled 50-nanometer-thick carbon nanotube sheets confine these powders in the galleries of irregular scroll sacks whose observed complex structures are related to twist-dependent extension of Archimedean spirals, Fermat spirals, or spiral pairs into scrolls. The strength and electronic connectivity of a small weight fraction of scrolled carbon nanotube sheet enables yarn weaving, sewing, knotting, braiding, and charge collection. This technology is used to make yarns of superconductors, lithium-ion battery materials, graphene ribbons, catalytic nanofibers for fuel cells, and titanium dioxide for photocatalysis.