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Direct access to hierarchically porous inorganic oxide materials with three-dimensionally interconnected networks

  • Jongkook Hwang
  • , Changshin Jo
  • , Kahyun Hur
  • , Jun Lim
  • , Seongseop Kim
  • , Jinwoo Lee*
  • *Corresponding author for this work
  • Pohang University of Science and Technology
  • Korea Institute of Science and Technology
  • Beamline Division

Research output: Contribution to journalJournal articlepeer-review

Abstract

Hierarchically porous oxide materials have immense potential for applications in catalysis, separation, and energy devices, but the synthesis of these materials is hampered by the need to use multiple templates and the associated complicated steps and uncontrollable mixing behavior. Here we report a simple one-pot strategy for the synthesis of inorganic oxide materials with multiscale porosity. The inorganic precursor and block copolymer are coassembled into an ordered mesostructure (microphase separation), while the in situ-polymerized organic precursor forms organic-rich macrodomains (macrophase separation) around which the mesostructure grows. Calcination generates hierarchical meso/macroporous SiO2 and TiO2 with three-dimensionally interconnected pore networks. The continuous 3D macrostructures were clearly visualized by nanoscale X-ray computed tomography. The resulting TiO2 was used as the anode in a lithium ion battery and showed excellent rate capability compared with mesoporous TiO2. This work is of particular importance because it (i) expands the base of BCP self-assembly from mesostructures to complex porous structures, (ii) shows that the interplay of micro- and macrophase separation can be fully exploited for the design of hierarchically porous inorganic materials, and therefore (iii) provides strategies for researchers in materials science and polymer science.

Original languageEnglish
Pages (from-to)16066-16072
Number of pages7
JournalJournal of the American Chemical Society
Volume136
Issue number45
DOIs
StatePublished - 2014.11.12

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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