Title : Kinetics of molecular encapsulation of 1-methylcyclopropene into alpha-cyclodextrin.

Pub. Date : 2007 Dec 26

PMID : 18052092






8 Functional Relationships(s)
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Protein Name
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1 1-methylcyclopropene (1-MCP), an ethylene inhibiting regulator, is commercially available in the form of an inclusion complex with alpha-cyclodextrin (alpha-CD). alpha-cyclodextrin CD46 molecule Homo sapiens
2 1-methylcyclopropene (1-MCP), an ethylene inhibiting regulator, is commercially available in the form of an inclusion complex with alpha-cyclodextrin (alpha-CD). alpha-cyclodextrin CD46 molecule Homo sapiens
3 In this study, molecular encapsulation of gaseous 1-MCP into aqueous alpha-CD was investigated in a closed, agitated vessel with a flat gas-liquid interface. alpha-cyclodextrin CD46 molecule Homo sapiens
4 Molecular encapsulation of gaseous 1-MCP by alpha-CD is a simultaneous two-step reaction which involves the aqueous dissolution of gaseous 1-MCP and the encapsulation of the dissolved molecules by alpha-CD. alpha-cyclodextrin CD46 molecule Homo sapiens
5 Molecular encapsulation of gaseous 1-MCP by alpha-CD is a simultaneous two-step reaction which involves the aqueous dissolution of gaseous 1-MCP and the encapsulation of the dissolved molecules by alpha-CD. alpha-cyclodextrin CD46 molecule Homo sapiens
6 Molecular encapsulation of gaseous 1-MCP by alpha-CD is a simultaneous two-step reaction which involves the aqueous dissolution of gaseous 1-MCP and the encapsulation of the dissolved molecules by alpha-CD. alpha-cyclodextrin CD46 molecule Homo sapiens
7 The encapsulation rates could be explained quantitatively by the gas absorption theory with a pseudo-first-order reaction between 1-MCP and alpha-CD. alpha-cyclodextrin CD46 molecule Homo sapiens
8 Changes in the X-ray diffraction pattern suggested that the crystal lattice structure of alpha-CD was altered upon inclusion of 1-MCP. alpha-cyclodextrin CD46 molecule Homo sapiens