| Literature DB >> 29397008 |
Ning Wang1, Xiaodong Li1,2, Zeyi Tu2,3, Fuhua Zhao1, Jianjiang He1, Zhaoyong Guan1, Changshui Huang1, Yuanping Yi3, Yuliang Li3.
Abstract
Boron-graphdiyne (BGDY), which has a unique π-conjugated structure comprising an sp-hybridized carbon skeleton and evenlydistributed boron heteroatoms in a well-organized 2D molecular plane, is prepared through a bottom-up synthetic strategy. Excellent conductivity, a relatively low band gap and a packing mode of the planar BGDY are observed. Notably, the unusual bonding environment of the all sp-carbon framework and the electron-deficient boron centers generates affinity to metal atoms, and thus provides extra binding sites. Furthermore, the expanded molecule pores of the BGDY molecular plane can also facilitate the transfer of metal ions in the perpendicular direction. The practical effect of the all sp-carbon structure and boron heteroatoms on the properties of BGDY are demonstrated in its performance as the anode in sodium-ion batteries.Entities:
Keywords: boron; carbon materials; electrochemistry; energy storage; graphdiyne
Year: 2018 PMID: 29397008 DOI: 10.1002/anie.201800453
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336