Metal-phenolic coordination chemistry provides a simple and rapid way to fabricate ultrathin films. Here, we report a facile strategy for the preparation of low-fouling and pH-degradable metal-phenolic network (MPN) capsules using a synthetic polyphenol derivative, poly(ethylene glycol) (PEG)-polyphenol, as a building block. PEG-MPN capsules exhibit reduced nonspecific protein adsorption and cell association compared with tannic acid (TA)-MPN capsules. In addition, they show faster disassembly at a biologically relevant pH (5) than TA-MPN capsules (80% in 5 h vs 30% in 10 days). PEG-MPN capsules combine both the low fouling properties of PEG and the advantages of the MPN-driven assembly process (e.g., fast assembly and pH-degradability)
© 2021 Zhixing LinMetal–phenolic networks (MPNs), which are made using metal ions and phenolic ligan...
We report the assembly of metal-polyphenol complex (MPC) films and capsules through the sequential d...
Particles adsorb proteins when they enter a physiological environment; this results in a surface coa...
© 2016 Dr. Yi JuCapsules have emerged as a useful platform for biomedical applications due to their ...
Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterial...
A new class of pH-responsive capsules based on metal-phenolic networks (MPNs) for anticancer drug lo...
Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterial...
Nano-/micrometer-scaled films and capsules made of low-fouling materials such as poly(ethylene glyco...
Metal-organic coordination materials are of widespread interest because of the coupled benefits of i...
© 2016 Dr. Junling GuoPolyphenols, these plant-derived natural products, were traditionally referred...
Metal–phenolic networks (MPNs), formed through coordination bonding between phenolic molecules and m...
© 2021 Shiyao LiThe rapid development of nanoparticle engineering has extended into a wide range of ...
© 2021 Qizhi ZhongMetal-phenolic chemistry, owing to its facile and versatile functions to manipulat...
Polyphenols are naturally occurring compounds that are ubiquitous in plants and display a spectrum o...
Metal-phenolic network (MPN) coatings have generated increasing interest owing to their biologically...
© 2021 Zhixing LinMetal–phenolic networks (MPNs), which are made using metal ions and phenolic ligan...
We report the assembly of metal-polyphenol complex (MPC) films and capsules through the sequential d...
Particles adsorb proteins when they enter a physiological environment; this results in a surface coa...
© 2016 Dr. Yi JuCapsules have emerged as a useful platform for biomedical applications due to their ...
Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterial...
A new class of pH-responsive capsules based on metal-phenolic networks (MPNs) for anticancer drug lo...
Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterial...
Nano-/micrometer-scaled films and capsules made of low-fouling materials such as poly(ethylene glyco...
Metal-organic coordination materials are of widespread interest because of the coupled benefits of i...
© 2016 Dr. Junling GuoPolyphenols, these plant-derived natural products, were traditionally referred...
Metal–phenolic networks (MPNs), formed through coordination bonding between phenolic molecules and m...
© 2021 Shiyao LiThe rapid development of nanoparticle engineering has extended into a wide range of ...
© 2021 Qizhi ZhongMetal-phenolic chemistry, owing to its facile and versatile functions to manipulat...
Polyphenols are naturally occurring compounds that are ubiquitous in plants and display a spectrum o...
Metal-phenolic network (MPN) coatings have generated increasing interest owing to their biologically...
© 2021 Zhixing LinMetal–phenolic networks (MPNs), which are made using metal ions and phenolic ligan...
We report the assembly of metal-polyphenol complex (MPC) films and capsules through the sequential d...
Particles adsorb proteins when they enter a physiological environment; this results in a surface coa...