Jump to content

Bilayer

From Wikipedia, the free encyclopedia

This is an old revision of this page, as edited by Citation bot (talk | contribs) at 18:19, 10 December 2019 (Alter: page. Add: arxiv. Formatted dashes. | You can use this bot yourself. Report bugs here.| Activated by User:Nemo bis | via #UCB_webform). The present address (URL) is a permanent link to this revision, which may differ significantly from the current revision.

For bilayers in biology, see lipid bilayer

A bilayer is a double layer of closely packed atoms or molecules.

The properties of bilayers are often studied in condensed matter physics, particularly in the context of semiconductor devices, where two distinct materials are united to form junctions (such as p-n junctions, Schottky junctions, etc.).

Layered materials, such as graphene, boron nitride, or transition metal dichalchogenides, have unique electronic properties as a bilayer system and are an active area of current research.[1] [2]

In biology a common example is the Lipid bilayer, which describes the structure of multiple organic structures, such as the membrane of a cell.

See also

References

  1. ^ Coleman, J. N; Lotya, M; O'Neill, A; Bergin, S. D; King, P. J; Khan, U; Young, K; Gaucher, A; De, S; Smith, R. J; Shvets, I. V; Arora, S. K; Stanton, G; Kim, H.-Y; Lee, K; Kim, G. T; Duesberg, G. S; Hallam, T; Boland, J. J; Wang, J. J; Donegan, J. F; Grunlan, J. C; Moriarty, G; Shmeliov, A; Nicholls, R. J; Perkins, J. M; Grieveson, E. M; Theuwissen, K; McComb, D. W; Nellist, P. D (2011). "Two-Dimensional Nanosheets Produced by Liquid Exfoliation of Layered Materials" (PDF). Science. 331 (6017): 568–571. Bibcode:2011Sci...331..568C. doi:10.1126/science.1194975. hdl:2262/66458. PMID 21292974. {{cite journal}}: Unknown parameter |displayauthors= ignored (|display-authors= suggested) (help)
  2. ^ Ipaves, B.; Justo, J.F.; Assali, L. V. C. (2019). "Carbon-Related Bilayers: Nanoscale Building Blocks for Self-Assembly Nanomanufacturing". J. Phys. Chem. C. 123 (37): 23195–23204. arXiv:1908.06218. doi:10.1021/acs.jpcc.9b05446.