Monday, November 30, 2015

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Thursday, February 12, 2015

Self-catalyzed Growth of Large-Area Nanofilms of Two-Dimensional Carbon
Graphdiyne: a promising thermoelectric material with high figure of merit. (arXiv:1502.01137v1 [cond-mat.mes-hall]) By L. Sun, P. H. Jiang, H. J. Liu, D. D. Fan, J. H. Liang, J. Wei, L. Cheng, J. Zhang, J. Shi As a new carbon allotrope, the recently fabricated graphdiyne has attached much attention due to its potential applications in the future electronic and optoelectronic devices. Here we demonstrate by multiscale computations that, unlike graphene, graphdiyne simultaneously possess high electrical conductivity and low thermal conductivity, which makes it an ideal system to realize the
Graphdiyne-metal contacts and graphdiyne transistors http://transistors-2.beforeitsnews.com/science-and-technology/2015/01/graphdiyne-metal-contacts-and-graphdiyne-transistors-2-2744378.html

Bulk graphdiyne powder applied for highly efficient lithium storage - Chemical Communications (RSC Publishing)

Bulk graphdiyne powder applied for highly efficient lithium storage - Chemical Communications (RSC Publishing)



Posted by Mike Favale

Owner of Graphdiyne.com
The graphdiyne's controlled growth into large-area and high ordered films with different numbers of layers is achieved.