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The research and development of thermally conductive polymeric composites has become one of the research hotspots of functional composites. They are ideal for thermal management in electronic devices and other applications that require heat dissipation. However, the design and development of thermally conductive polymeric composites with good thermal conductivity, mechanical properties, biodegradability, and processability is still a very challenging task. To this end, sericin with good biocompatibility, degradability, and processability is introduced, and a flexible thermally conductive boron nitride nanosheets @ polydopamine (BNNSs@PDA)/poly(vinyl alcohol) (PVA)/sericin (FPPS) hybrid film is developed. The obtained FPPS hybrid films are composed of highly oriented network structured BNNSs and sericin molecules and exhibit high in-plane thermal conductivity (12.11 W m–1 K–1) and good mechanical properties. This study provides a promising approach for crafting polymeric thermally conductive composites with excellent comprehensive properties using natural materials in thermal management fields.
Jiang et al. (Thu,) studied this question.
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