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Greenificated Molecularly Imprinted Materials for Advanced Applications.

Abbas OstovanMaryam ArabiYunqing WangJinhua LiBowei LiXiaoyan WangLingxin Chen
Published in: Advanced materials (Deerfield Beach, Fla.) (2022)
Molecular imprinting technology (MIT) produces artificial binding sites with precise complementarity to substrates and thereby is capable of exquisite molecular recognition. Over five decades of evolution, it is predicted that the resulting host imprinted materials will overtake natural receptors for research and application purposes, but in practice, this has not yet been realized due to the unsustainability of their life cycles (i.e., precursors, creation, use, recycling, and end-of-life). To address this issue, greenificated molecularly imprinted polymers (GMIPs) are a new class of plastic antibodies that have approached sustainability by following one or more of the greenification principles, while also demonstrating more far-reaching applications compared to their natural counterparts. In this review, the most recent developments in the delicate design and advanced application of GMIPs in six fast-growing and emerging fields are surveyed, namely biomedicine/therapy, catalysis, energy harvesting/storage, nanoparticle detection, gas sensing/adsorption, and environmental remediation. In addition, their distinct features are highlighted, and the optimal means to utilize these features for attaining incredibly far-reaching applications are discussed. Importantly, the obscure technical challenges of the greenificated MIT are revealed, and conceivable solutions are offered. Lastly, several perspectives on future research directions are proposed.
Keyphrases
  • molecularly imprinted
  • solid phase extraction
  • primary care
  • current status
  • stem cells
  • loop mediated isothermal amplification
  • single cell
  • quality improvement
  • high resolution
  • aqueous solution
  • bone marrow
  • iron oxide