Edge Rewrite
// HTMLRewriter · presentation

This page was redesigned at the edge.

Cloudflare fetched the original article and streamed it through HTMLRewriter to apply an entirely new visual system without rebuilding the source page.

// request.cf · coarse context

A page that knows where it met you.

Only coarse request metadata is shown. This demo does not display or persist visitor IP addresses.

Country
US
Cloudflare location
CMH
Connection
HTTP/2
Language
Not provided

Ray ID: a22db345a8491709

Jump to content

Bilayer

From Wikipedia, the free encyclopedia

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 dichalcogenides, have unique electronic properties as bilayer systems and are an active area of current research.[1]

In biology, a common example is the lipid bilayer, which describes the structure of multiple organic structures, such as the membrane of a cell.[2]

See also

[edit]

References

[edit]
  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; et al. (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.
  2. Alberts, Bruce; Johnson, Alexander; Lewis, Julian; Raff, Martin; Roberts, Keith; Walter, Peter (2002), "The Lipid Bilayer", Molecular Biology of the Cell. 4th edition, Garland Science, retrieved 2023-12-21