Process for imparting water solubility or water dispersibility to hydrophobic cluster compound
View Patent ↗Provided is a complex comprising a hydrophobic cluster compound and a β-1,3-1,6-D-glucan having a degree of branching (a ratio of β-1,6 linkages to β-1,3 linkages) of 50 to 100%.
1. A complex comprising
a hydrophobic cluster compound selected from the group consisting of a carborane, a fullerene, a carbon nanotube, a carbon nanocoil, and a microparticle, wherein the microparticle is an aggregation of at least one kind of metal atom selected from the group consisting of platinum, gold, silver, copper, titanium, zinc, iron, cobalt, magnesium, aluminum, and zirconium, and
a β-1,3-1,6-D-glucan having a degree of branching (a ratio of β-1,6 linkages to β-1,3 linkages) of 85 to 100%.
2. The complex according to claim 1 , wherein the β-1,3-1,6-D-glucan was produced by Aureobasidium pullulans.
3. The complex according to claim 1 , wherein the β-1,3-1,6-D-glucan was subjected to alkali treatment at a pH of 12 or higher followed by neutralization.
4. A production process for a complex comprising a hydrophobic cluster compound and a β-1,3-1,6-D-glucan, the process comprising the steps of
agitating a hydrophobic cluster compound selected from the group consisting of a carborane, a fullerene, a carbon nanotube, a carbon nanocoil, and a microparticle, wherein the microparticle is an aggregation of at least one kind of metal atom selected from the group consisting of platinum, gold, silver, copper, titanium, zinc, iron, cobalt, magnesium, aluminum, and zirconium, with a β-1,3-1,6-D-glucan having a degree of branching (a ratio of β-1,6 linkages to β-1,3 linkages) of 50 to 100% while maintaining the solid state, and
agitating the mixture with added water.
5. A production process for a complex comprising a hydrophobic cluster compound and a β-1,3-1,6-D-glucan, the process comprising the steps of
mixing, in a polar solvent, a hydrophobic cluster compound selected from the group consisting of a carborane, a fullerene, a carbon nanotube, a carbon nanocoil, and a microparticle, wherein the microparticle is an aggregation of at least one kind of metal atom selected from the group consisting of platinum, gold, silver, copper, titanium, zinc, iron, cobalt, magnesium, aluminum, and zirconium, and a β-1,3-1,6-D-glucan having a degree of branching (a ratio of β-1,6 linkages to β-1,3 linkages) of 50 to 100%, and
adding water to the obtained mixture and allowing the mixture to ripen.
6. The production process according to claim 4 , wherein the β-1,3-1,6-D-glucan was produced by Aureobasidium pullulans.
7. The production process according to claim 4 , wherein the β-1,3-1,6-D-glucan was subjected to alkali treatment at a pH of 12 or higher followed by neutralization.
8. The production process according to claim 5 , wherein the β-1,3-1,6-D-glucan was produced by Aureobasidium pullulans.
9. The production process according to claim 5 , wherein the β-1,3-1,6-D-glucan was subjected to alkali treatment at a pH of 12 or higher followed by neutralization.