TY - JOUR
T1 - Controlled Fabrication of Functional Capsules Based on the Synergistic Interaction between Polyphenols and MOFs under Weak Basic Condition
AU - Wang, Hui
AU - Zhu, Wei
AU - Ping, Yuan
AU - Wang, Chen
AU - Gao, Ning
AU - Yin, Xianpeng
AU - Gu, Chen
AU - Ding, Dan
AU - Brinker, C. Jeffrey
AU - Li, Guangtao
N1 - Publisher Copyright:
© 2017 American Chemical Society.
PY - 2017/4/26
Y1 - 2017/4/26
N2 - Metal-organic coordination materials with controllable nanostructures are of widespread interest due to the coupled benefits of inorganic/organic building blocks and desired architectures. In this work, based on the finding of a synergistic interaction between metal-organic frameworks (MOFs) and natural polyphenols under weak basic condition, a facile strategy has been developed for directly fabricating diverse phenolic-inspired functional materials or metal-phenolic frameworks (MPFs) with controlled hollow nanostructures (polyhedral core-shell, rattle-like, hollow cage, etc.) and controllable size, morphology, and roughness, as well as composition. By further incorporating the diverse functionalities of polyphenols such as low toxicity and therapeutic properties, catalytic activity, and ability to serve as carbon precursors, into the novel assemblies, diverse artificially designed nanoarchitectures with target functionalities have been generated for an array of applications.
AB - Metal-organic coordination materials with controllable nanostructures are of widespread interest due to the coupled benefits of inorganic/organic building blocks and desired architectures. In this work, based on the finding of a synergistic interaction between metal-organic frameworks (MOFs) and natural polyphenols under weak basic condition, a facile strategy has been developed for directly fabricating diverse phenolic-inspired functional materials or metal-phenolic frameworks (MPFs) with controlled hollow nanostructures (polyhedral core-shell, rattle-like, hollow cage, etc.) and controllable size, morphology, and roughness, as well as composition. By further incorporating the diverse functionalities of polyphenols such as low toxicity and therapeutic properties, catalytic activity, and ability to serve as carbon precursors, into the novel assemblies, diverse artificially designed nanoarchitectures with target functionalities have been generated for an array of applications.
KW - capsule
KW - metal organic framework
KW - nanostructure
KW - polyphenol
KW - synergistic interaction
UR - http://www.scopus.com/inward/record.url?scp=85018816087&partnerID=8YFLogxK
U2 - 10.1021/acsami.7b01788
DO - 10.1021/acsami.7b01788
M3 - Article
C2 - 28398036
AN - SCOPUS:85018816087
SN - 1944-8244
VL - 9
SP - 14258
EP - 14264
JO - ACS applied materials & interfaces
JF - ACS applied materials & interfaces
IS - 16
ER -