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제117회 대한화학회 학술발표회, 총회 및 기기전시회 Colloidal inverse bicontinuous cubic membranes of block copolymers with tunable surface functional groups

2016년 3월 23일 15시 32분 46초
KCS2.O-1 이곳을 클릭하시면 발표코드에 대한 설명을 보실 수 있습니다.
목 10시 : 30분
한국다우케미칼 우수논문상 수상자 구두발표
저자 및
라윤주, 박치영1, 신태주, 주상훈2, 강세병3, 김경택3,*
울산과학기술대학교(UNIST) 화학과, Korea
1KIST, Korea
2울산과학기술대학교(UNIST) 에너지화학공학부, Korea
3울산과학기술대학교(UNIST) 나노생명화학공학부, Korea

Analogous to the complex membranes found in cellular organelles, such as the endoplasmic reticulum, the inverse cubic mesophases of lipids and their colloidal forms (cubosomes) possess internal networks of water channels arranged in crystalline order, which provide a unique nanospace for membrane-protein crystallization and guest encapsulation.Polymeric analogues of cubosomes formed by the direct self-assembly of block copolymers in solution could provide new polymeric mesoporous materials with a three-dimensionally organized internal maze of large water channels. Here we report the self-assembly of amphiphilic dendritic–linear block copolymers into polymer cubosomes in aqueous solution. The presence of precisely defined bulky dendritic blocks drives the block copolymers to form spontaneously highly curved bilayers in aqueous solution. This results in the formation of colloidal inverse bicontinuous cubic mesophases. The internal networks of water channels provide a high surface area with tunable surface functional groups that can serve as anchoring points for large guests such as proteins and enzymes.