Skip to content
cryptand
EntityQ596999· pop 18· linked from 41 articles

Also known as cryptands

[[File:Cryptate of potassium cation.jpg|thumbnail|Structure of [[2.2.2-Cryptand|[2.2.2]cryptand]] encapsulating a potassium cation (purple). At crystalline state, obtained with an X-ray diffraction.]] [[File:Cryptand.svg|thumb|class=skin-invert-image|[2.2.2]Cryptand]]

Wikidata facts

Show 1 more fact
Commons category
Cryptands
Sources (2)

via Wikidata · CC0

~4 min read

Article

8 sections
Contents
  • Structure
  • Properties
  • Cation binding
  • Anion binding
  • Laboratory uses
  • See also
  • References
  • General reading

[[File:Cryptate of potassium cation.jpg|thumbnail|Structure of [[2.2.2-Cryptand|[2.2.2]cryptand]] encapsulating a potassium cation (purple). At crystalline state, obtained with an X-ray diffraction.]] [[File:Cryptand.svg|thumb|class=skin-invert-image|[2.2.2]Cryptand]]

In chemistry, cryptands are a family of synthetic, bicyclic and polycyclic, multidentate ligands for a variety of cations. The Nobel Prize for Chemistry in 1987 was given to Donald J. Cram, Jean-Marie Lehn, and Charles J. Pedersen for their efforts in discovering and determining uses of cryptands and crown ethers, thus launching the now flourishing field of supramolecular chemistry. The term cryptand implies that this ligand binds substrates in a crypt, interring the guest as in a burial. These molecules are three-dimensional analogues of crown ethers but are more selective and strong as complexes for the guest ions. The resulting complexes are lipophilic.

Gallery (4)

Connections

Categories