349453-13-0Relevant academic research and scientific papers
GRAPHENE NANORIBBONS WITH CONTROLLED ZIG-ZAG EDGE AND COVE EDGE CONFIGURATION
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Page/Page column 44; 45, (2015/09/22)
Provided are graphene nanoribbons with controlled zig-zag edge and cove edge configuration and methods for preparing such graphene nanoribbons. The nanoribbons are selected from the following formulae.
Toward Cove-Edged Low Band Gap Graphene Nanoribbons
Liu, Junzhi,Li, Bo-Wei,Tan, Yuan-Zhi,Giannakopoulos, Angelos,Sanchez-Sanchez, Carlos,Beljonne, David,Ruffieux, Pascal,Fasel, Roman,Feng, Xinliang,Müllen, Klaus
, p. 6097 - 6103 (2015/05/27)
Graphene nanoribbons (GNRs), defined as nanometer-wide strips of graphene, have attracted increasing attention as promising candidates for next-generation semiconductors. Here, we demonstrate a bottom-up strategy toward novel low band gap GNRs (Eg/s
Phane properties of [2.2]paracyclophane/dehydrobenzoannulene hybrids
Hinrichs, Heino,Boydston, Andrew J.,Jones, Peter G.,Hess, Kirsten,Herges, Rainer,Haley, Michael M.,Hopf, Henning
, p. 7103 - 7115 (2007/10/03)
A series of [2.2]paracyclophane/dehydrobenzo[14]annulene (PC/DBA) hybrids (hydrocarbons 5, 6, 9, 10b, and 10c), [2.2]paracyclophane/dehydro[14]annulene (PC/DA) hybrids (7 and 8) and suitable model systems (11. 12. and 33) has been synthesized. Comparison
