Transparent Thermally Conductive CNC / PVA Composites Prepared via Cation‐Promoted Network Formation and Matched Refractive Index

ABSTRACT Introducing inorganic thermal fillers into organic polymers is the major solution to increase thermal conductivity (TC), but typically at the expense of optical transparency. Fabrication of transparent thermally conductive polymers remains a great challenge today. In this work, negatively charged and highly crystalline cellulose nanocrystals (CNCs) are introduced into polyvinyl alcohol (PVA). Owing to their closely matched refractive indices, the prepared CNC/PVA composites exhibit enhanced TC and reduced loss of optical transparency. The CNC/PVA composite with 75 wt% CNC loading shows cross‐plane TC of 0.33 W m −1 K −1 (1.74 times that of pristine PVA) while retaining 77% of the original transparency of PVA at 600 nm. Addition of cetyltrimethylammonium bromide (CTAB) further improves the thermal and optical properties of CNC/PVA composites. With 0.5 wt% CTAB, the composite has a significantly enhanced cross‐plane TC of 0.92 W m −1 K −1 (4.84 times that of pristine PVA), while preserving 96% of original PVA transparency at 600 nm. Comparative studies using neutral and anionic surfactants suggest that the improvement in TC by CTAB is probably due to the promoted CNC network formation by cations.

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Publication Details

Journal
Polymer Engineering and Science
Published
2026-09-21
DOI
https://doi.org/10.1002/pen.70876
Primary Topic
Thermal properties of materials
Type
article
Field-Weighted Citation Impact
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article

Transparent Thermally Conductive CNC / PVA Composites Prepared via Cation‐Promoted Network Formation and Matched Refractive Index

Xiao Wei Huang, Qiyu Bian, Yi Wang, Luyao Zhou et al.
Polymer Engineering and Science
Thermal properties of materials
article

Transparent Thermally Conductive CNC / PVA Composites Prepared via Cation‐Promoted Network Formation and Matched Refractive Index

Xiao Wei Huang, Qiyu Bian, Yi Wang, Luyao Zhou, Hongjie Luo
article en

Abstract

ABSTRACT Introducing inorganic thermal fillers into organic polymers is the major solution to increase thermal conductivity (TC), but typically at the expense of optical transparency. Fabrication of transparent thermally conductive polymers remains a great challenge today. In this work, negatively charged and highly crystalline cellulose nanocrystals (CNCs) are introduced into polyvinyl alcohol (PVA). Owing to their closely matched refractive indices, the prepared CNC/PVA composites exhibit enhanced TC and reduced loss of optical transparency. The CNC/PVA composite with 75 wt% CNC loading shows cross‐plane TC of 0.33 W m −1 K −1 (1.74 times that of pristine PVA) while retaining 77% of the original transparency of PVA at 600 nm. Addition of cetyltrimethylammonium bromide (CTAB) further improves the thermal and optical properties of CNC/PVA composites. With 0.5 wt% CTAB, the composite has a significantly enhanced cross‐plane TC of 0.92 W m −1 K −1 (4.84 times that of pristine PVA), while preserving 96% of original PVA transparency at 600 nm. Comparative studies using neutral and anionic surfactants suggest that the improvement in TC by CTAB is probably due to the promoted CNC network formation by cations.

Polymer Engineering and Science
Shanghai University (CN), State Administration of Cultural Heritage (CN), Department of Cultural Heritage (LT)
Openalex Percentile: Top 25%
Thermal properties of materials
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