Nanoarchitectonic-Based Material Platforms for Environmental and Bioprocessing Applications

  • Katsuhiko Ariga
  • , Joshua A. Jackman
  • , Nam Joon Cho
  • , Shan hui Hsu
  • , Lok Kumar Shrestha
  • , Taizo Mori
  • , Jun Takeya

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

The challenges of pollution, environmental science, and energy consumption have become global issues of broad societal importance. In order to address these challenges, novel functional systems and advanced materials are needed to achieve high efficiency, low emission, and environmentally friendly performance. A promising approach involves nanostructure-level controls of functional material design through a novel concept, nanoarchitectonics. In this account article, we summarize nanoarchitectonic approaches to create nanoscale platform structures that are potentially useful for environmentally green and bioprocessing applications. The introduced platforms are roughly classified into (i) membrane platforms and (ii) nanostructured platforms. The examples are discussed together with the relevant chemical processes, environmental sensing, bio-related interaction analyses, materials for environmental remediation, non-precious metal catalysts, and facile separation for biomedical uses.

Original languageEnglish
Pages (from-to)1891-1912
Number of pages22
JournalChemical Record
Volume19
Issue number9
DOIs
StatePublished - 1 Sep 2019
Externally publishedYes

Keywords

  • bio-process
  • catalysis
  • interface
  • nanoarchitectonics
  • sensing

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