Cucurbituril (CB) has recently been employed in many fields, including water purification, solar cells, energy conversion, and biomedical engineering. However, the poor solubility of CB poses a serious obstacle to the further development of CB applications. To enhance the solubility of members of the CB family (CB[5-8]) by preventing self aggregation in aqueous solutions, the synthesis of highly stable, rapid, and water-dispersible particles is presented in this paper based on a simple process that employs a nanocomposite composed of CB and amine-modified diatomaceous earth (DA). CB can be coated onto the surface of the DA and stabilized to produce a novel material that is useful for various applications. The nanocomposite (CB-DA) exhibited...
Making use of the non-covalent bond to make materials is of great interest in many fields of researc...
Cucurbit[n]uril, CB[n], is made from the condensation of glycoluril and formaldehyde in concentrated...
\u3cp\u3eThe reversThe reversible introduction of functionality at material surfaces is of interest ...
Cucurbituril (CB) has recently been employed in many fields, including water purification, solar cel...
Cucurbituril (CB) is a unique macrocycle with a rigid symmetrical structure, which is composed of tw...
Some host-guest complexes of cucurbit[n]uril (CB[n]) host molecules act as supramolecular amphiphile...
Nagasaki Symposium on Nano-Dynamics 2008 (NSND2008) 平成20年1月29日(火)於長崎大学 Invited Lectur
Microencapsulation is a fundamental concept behind a wide range of daily applications ranging from p...
Cataloged from PDF version of article.Cucurbituril (CB) is a unique macrocycle with a rigid symmetri...
Cucurbiturils (CB[n]) are macrocyclic compounds made from glycoluril monomers. They have the potenti...
The scalable production of uniformly distributed graphene (GR)-based composite materials remains a s...
The research presented in this dissertation pioneers a new area of study in CB[n]-metal nanoparticle...
Cucurbiturils are the most potent artificial receptors known for many organic molecules in water. Ho...
A facile synthesis of highly stable, water-dispersible metal-nanoparticle- decorated polymer nanocap...
Supramolecular chemistry has been a very important research area in the past several decades. In thi...
Making use of the non-covalent bond to make materials is of great interest in many fields of researc...
Cucurbit[n]uril, CB[n], is made from the condensation of glycoluril and formaldehyde in concentrated...
\u3cp\u3eThe reversThe reversible introduction of functionality at material surfaces is of interest ...
Cucurbituril (CB) has recently been employed in many fields, including water purification, solar cel...
Cucurbituril (CB) is a unique macrocycle with a rigid symmetrical structure, which is composed of tw...
Some host-guest complexes of cucurbit[n]uril (CB[n]) host molecules act as supramolecular amphiphile...
Nagasaki Symposium on Nano-Dynamics 2008 (NSND2008) 平成20年1月29日(火)於長崎大学 Invited Lectur
Microencapsulation is a fundamental concept behind a wide range of daily applications ranging from p...
Cataloged from PDF version of article.Cucurbituril (CB) is a unique macrocycle with a rigid symmetri...
Cucurbiturils (CB[n]) are macrocyclic compounds made from glycoluril monomers. They have the potenti...
The scalable production of uniformly distributed graphene (GR)-based composite materials remains a s...
The research presented in this dissertation pioneers a new area of study in CB[n]-metal nanoparticle...
Cucurbiturils are the most potent artificial receptors known for many organic molecules in water. Ho...
A facile synthesis of highly stable, water-dispersible metal-nanoparticle- decorated polymer nanocap...
Supramolecular chemistry has been a very important research area in the past several decades. In thi...
Making use of the non-covalent bond to make materials is of great interest in many fields of researc...
Cucurbit[n]uril, CB[n], is made from the condensation of glycoluril and formaldehyde in concentrated...
\u3cp\u3eThe reversThe reversible introduction of functionality at material surfaces is of interest ...