Literature DB >> 35610858

In-Plane Anisotropic Thermally Conductive Nanopapers by Drawing Bacterial Cellulose Hydrogels.

Kojiro Uetani1, Takumi Okada1, Hideko T Oyama1.   

Abstract

We developed flexible polymeric "heat-guiding materials" by simply drawing bacterial cellulose (BC) hydrogels to align the cellulose nanofibers and form "nanopapers" with anisotropic thermal conductivity. The in-plane anisotropy of thermal conductivity between the drawn and transverse directions increased as the draw ratio increased. For the drawn BC nanopapers, the coefficient of thermal expansion was found to be inversely correlated with the thermal diffusivity. We fabricated a planar spiral sheet by assembling the drawn BC strips to visualize the "heat flux controllability". The coexistence of heat-diffusing and heat-insulating capacities within the single nanopaper plane could help to cool future thin electronics.

Entities:  

Year:  2017        PMID: 35610858     DOI: 10.1021/acsmacrolett.7b00087

Source DB:  PubMed          Journal:  ACS Macro Lett        ISSN: 2161-1653            Impact factor:   6.903


  3 in total

1.  Thermal Diffusion Films with In-Plane Anisotropy by Aligning Carbon Fibers in a Cellulose Nanofiber Matrix.

Authors:  Kojiro Uetani; Kosuke Takahashi; Rikuya Watanabe; Shota Tsuneyasu; Toshifumi Satoh
Journal:  ACS Appl Mater Interfaces       Date:  2022-07-20       Impact factor: 10.383

2.  Highly Aligned Bacterial Nanocellulose Films Obtained During Static Biosynthesis in a Reproducible and Straightforward Approach.

Authors:  Nerea Murugarren; Soledad Roig-Sanchez; Irene Antón-Sales; Nanthilde Malandain; Kai Xu; Eduardo Solano; Juan Sebastian Reparaz; Anna Laromaine
Journal:  Adv Sci (Weinh)       Date:  2022-07-21       Impact factor: 17.521

3.  Thermal diffusivity modulation driven by the interfacial elastic dynamics between cellulose nanofibers.

Authors:  Kojiro Uetani; Shogo Izakura; Hirotaka Koga; Masaya Nogi
Journal:  Nanoscale Adv       Date:  2020-01-20
  3 in total

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