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January 1, 2025Journal of Materials Chemistry AOpen Access

Proton conductivity at the controlled hydrophilic and hydrophobic surfaces of mesoporous aluminum organophosphonates

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Authors

TATakahiro AmiKOKouki OkaHKHitoshi Kasai

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Overview

Analysis shows temperature-dependent control of proton transport rates in mesoporous materials, suggesting impacts on water transport efficiency.

Key Points

  • Proton transport rate is influenced by temperature control on hydrophilic surfaces, leading to variations in efficiency.
  • Significant findings show that specific adjustments in materials can enhance performance; the study likely indicates practical applications.
  • Assessment using layers of aluminum organophosphonates reveals essential attributes for proton conductivity.
  • Highlights the importance of organic linkers in modifying transport mechanisms for advancing material design.

Cite This Study

Ami et al. (2025) studied this question.

synapsesocial.com/papers/69255737c0ce034ddc35af95https://doi.org/10.1039/d5ta06982c
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Proton conductivity of mesoporous aluminum organophosphonate enhanced by the affinity of integral organic linker to water molecule2026
  2. 2Aqueous phosphonic acid treatments of aluminium: Effect of oxide dissolution and re-oxidation on adsorbate formation2024 · 1 citations
  3. 3Self‐Assembled and Polymerized Hierarchical 2D Nanostructures of Phosphonic Acid Reactive Mesogens for High‐Temperature Anhydrous Proton Transport2026
  4. 4Building Blocks Selected via a Rational Design Strategy for Developing POM-Based MOFs with Enhanced Proton Conductivity.2025 · 8 citations
  5. 5Porous Environmental Polarity as a Critical Descriptor for Efficient Proton Conductivity in Metal–Organic Frameworks2025