Applications Using the Metal Affinity of Polyphenols with Mussel-Inspired Chemistry

  • Halake, Kantappa; 
  • Cho, Seungvin; 
  • Kim, Junseok; 
  • Lee, Taewon; 
  • Cho, Yunho; 
  • ... Lee, Jonghwi; 
  • 외 8명
Citations

WEB OF SCIENCE

19
Citations

SCOPUS

22

초록

Multi-functionality plays a decisive role in tuning and improving fundamental properties of active molecules, and grafting polymerization/conjugation development imparts properties of active molecules to the backbones. Recently, metal-polyphenol coordination networks have attracted a great deal of attention. A variety of transition metal ions can freely combine with catechol/keto-enol containing polyphenols to form metal-polyphenol networks. Herein, the recently studied conjugated polyphenols were summarized and compared to dopamine-conjugated polymers with evaluation of their properties and gelation behaviors. The biomimetic understanding of bioinspired adhesion, metal ion coordination of hydroxyl groups, and their rearrangement within aglycone could expand the ability for the development of biomimetic, eco-friendly, and biocompatible polymers.

키워드

flavonoid; conjugation; metal coordination; antioxidation; adhesion; dopamine; PROTEIN INTERACTIONS; GRAFTED CHITOSAN; POLYMER-FILMS; GALLIC ACID; IN-VITRO; ANTIOXIDANT; CATECHIN; SURFACE; IMMOBILIZATION; NANOMATERIALS
제목
Applications Using the Metal Affinity of Polyphenols with Mussel-Inspired Chemistry
저자
Halake, Kantappa; Cho, Seungvin; Kim, Junseok; Lee, Taewon; Cho, Yunho; Chi, Sangwon; Park, Minjoon; Kim, Kiho; Lee, Duckhee; Ju, Hyun; Choi, Yongha; Jang, Myoungsu; Choe, GyuHyeong; Lee, Jonghwi
DOI
10.1007/s13233-018-6051-x
발행일
2018-02
유형
Review
저널명
Macromolecular Research
권
26
호
2
페이지
93 ~ 99