| Literature DB >> 27562642 |
Huan Wang1, Xiaozhi Xu2,3, Jiayu Li3,4, Li Lin1, Luzhao Sun1,3, Xiao Sun1,3, Shuli Zhao1,3, Congwei Tan1,3, Cheng Chen5, Wenhui Dang1, Huaying Ren1,3, Jincan Zhang1,3, Bing Deng1, Ai Leen Koh6, Lei Liao1, Ning Kang4, Yulin Chen5, Hongqi Xu4, Feng Ding7, Kaihui Liu2, Hailin Peng8,9, Zhongfan Liu10,11.
Abstract
Wafer-sized single-crystalline Cu (100) surface can be readily achieved on stacked polycrystalline Cu foils via simple oxygen chemisorption-induced reconstruction, enabling fast growth of large-scale millimeter-sized single-crystalline graphene arrays under molecular flow. The maximum growth rate can reach 300 μm min-1 , several orders of magnitude higher than previously reported values for millimeter-sized single-crystalline graphene growth on Cu foils.Entities:
Keywords: fast growth; inch-sized single-crystalline Cu (100); large-domain single-crystalline graphene; molecular flow
Year: 2016 PMID: 27562642 DOI: 10.1002/adma.201603579
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849