Login / Signup

Rapidly sequence-controlled electrosynthesis of organometallic polymers.

Jian ZhangJinxin WangChang WeiYanfang WangGuanyu XieYongfang LiMao Li
Published in: Nature communications (2020)
Single rich-stimuli-responsive organometallic polymers are considered to be the candidate for ultrahigh information storage and anti-counterfeiting security. However, their controllable synthesis has been an unsolved challenge. Here, we report the rapidly sequence-controlled electrosynthesis of organometallic polymers with exquisite insertion of multiple and distinct monomers. Electrosynthesis relies on the use of oxidative and reductive C-C couplings with the respective reaction time of 1 min. Single-monomer-precision propagation does not need protecting and deprotecting steps used in solid-phase synthesis, while enabling the uniform synthesis and sequence-defined possibilities monitored by both UV-vis spectra and cyclic voltammetry. Highly efficient electrosynthesis possessing potentially automated production can incorporate an amount of available metal and ligand species into a single organometallic polymer with complex architectures and functional versatility, which is proposed to have ultrahigh information storage and anti-counterfeiting security with low-cost coding and decoding processes at the single organometallic polymer level.
Keyphrases
  • highly efficient
  • low cost
  • machine learning
  • health information
  • global health
  • deep learning
  • amino acid
  • healthcare
  • public health
  • social media
  • density functional theory
  • high resolution
  • liquid chromatography