Guest rotations within a capsuleplex probed by NMR and EPR techniques

With the help of (1)H NMR and EPR techniques, we have probed the dynamics of guest molecules included within a water-soluble deep cavity cavitand known by the trivial name octa acid. All guest molecules investigated here form 2:1 (host/guest) complexes in water, and two host molecules encapsulate th...

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Veröffentlicht in:Langmuir : the ACS journal of surfaces and colloids. - 1992. - 26(2010), 10 vom: 18. Mai, Seite 6943-53
1. Verfasser: Kulasekharan, Revathy (VerfasserIn)
Weitere Verfasser: Jayaraj, Nithyanandhan, Porel, Mintu, Choudhury, Rajib, Sundaresan, Arun Kumar, Parthasarathy, Anand, Ottaviani, M Francesca, Jockusch, Steffen, Turro, N J, Ramamurthy, V
Format: Online-Aufsatz
Sprache:English
Veröffentlicht: 2010
Zugriff auf das übergeordnete Werk:Langmuir : the ACS journal of surfaces and colloids
Schlagworte:Journal Article Research Support, U.S. Gov't, Non-P.H.S. Fatty Acids, Unsaturated Water 059QF0KO0R octa-2,4,6-trienoic acid 702XZO95X4
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520 |a With the help of (1)H NMR and EPR techniques, we have probed the dynamics of guest molecules included within a water-soluble deep cavity cavitand known by the trivial name octa acid. All guest molecules investigated here form 2:1 (host/guest) complexes in water, and two host molecules encapsulate the guest molecule by forming a closed capsule. We have probed the dynamics of the guest molecule within this closed container through (1)H NMR and EPR techniques. The timescales offered by these two techniques are quite different, millisecond and nanosecond, respectively. For EPR studies, paramagnetic nitroxide guest molecules and for (1)H NMR studies, a wide variety of structurally diverse neutral organic guest molecules were employed. The guest molecules freely rotate along their x axis (long molecular axis and magnetic axis) on the NMR timescale; however, their rotation is slowed with respect to that in water on the EPR timescale. Rotation along the x axis is dependent on the length of the alkyl chain attached to the nitroxide probe. Overall rotation along the y or z axis was very much dependent on the structure of the guest molecule. The guests investigated could be classified into three groups: (a) those that do not rotate along the y or z axis both at room and elevated (55 degrees C) temperatures, (b) those that rotate freely at room temperature, and (c) those that do not rotate at room temperature but do so at higher temperatures. One should note that rotation here refers to the NMR timescale and it is quite possible that all molecules may rotate at much longer timescales than the one probed here. A slight variation in structure alters the rotational mobility of the guest molecules 
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700 1 |a Jayaraj, Nithyanandhan  |e verfasserin  |4 aut 
700 1 |a Porel, Mintu  |e verfasserin  |4 aut 
700 1 |a Choudhury, Rajib  |e verfasserin  |4 aut 
700 1 |a Sundaresan, Arun Kumar  |e verfasserin  |4 aut 
700 1 |a Parthasarathy, Anand  |e verfasserin  |4 aut 
700 1 |a Ottaviani, M Francesca  |e verfasserin  |4 aut 
700 1 |a Jockusch, Steffen  |e verfasserin  |4 aut 
700 1 |a Turro, N J  |e verfasserin  |4 aut 
700 1 |a Ramamurthy, V  |e verfasserin  |4 aut 
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