| Literature DB >> 30516055 |
Rahul Rao1,2, Cary L Pint3, Ahmad E Islam1,2, Robert S Weatherup4,5, Stephan Hofmann6, Eric R Meshot7, Fanqi Wu8, Chongwu Zhou8, Nicholas Dee9, Placidus B Amama10, Jennifer Carpena-Nuñez1,2, Wenbo Shi11, Desiree L Plata12, Evgeni S Penev13, Boris I Yakobson13, Perla B Balbuena14, Christophe Bichara15, Don N Futaba16, Suguru Noda17, Homin Shin18, Keun Su Kim18, Benoit Simard18, Francesca Mirri13, Matteo Pasquali13, Francesco Fornasiero7, Esko I Kauppinen19, Michael Arnold20, Baratunde A Cola21, Pavel Nikolaev1,2, Sivaram Arepalli13, Hui-Ming Cheng22,23, Dmitri N Zakharov24, Eric A Stach25, Jin Zhang26, Fei Wei27, Mauricio Terrones28, David B Geohegan29, Benji Maruyama1, Shigeo Maruyama30, Yan Li26, W Wade Adams13, A John Hart9.
Abstract
Advances in the synthesis and scalable manufacturing of single-walled carbon nanotubes (SWCNTs) remain critical to realizing many important commercial applications. Here we review recent breakthroughs in the synthesis of SWCNTs and highlight key ongoing research areas and challenges. A few key applications that capitalize on the properties of SWCNTs are also reviewed with respect to the recent synthesis breakthroughs and ways in which synthesis science can enable advances in these applications. While the primary focus of this review is on the science framework of SWCNT growth, we draw connections to mechanisms underlying the synthesis of other 1D and 2D materials such as boron nitride nanotubes and graphene.Entities:
Keywords: 2D materials; CVD; boron nitride nanotubes; carbon nanotubes; chirality control; graphene; helicity; synthesis
Year: 2018 PMID: 30516055 DOI: 10.1021/acsnano.8b06511
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881