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December 24, 2019Materials22 citationsOpen Access

Properties of Undoped Few-Layer Graphene-Based Transparent Heaters

YZYong ZhangHLHao LiuLTLongwang Tan

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Abstract

In many applications like sensors, displays, and defoggers, there is a need for transparent and efficient heater elements produced at low cost. For this reason, we evaluated the performance of graphene-based heaters with from one to five layers of graphene on flexible and transparent polyethylene terephthalate (PET) substrates in terms of their electrothermal properties like heating/cooling rates and steady-state temperatures as a function of the input power density. We found that the heating/cooling rates followed an exponential time dependence with a time constant of just below 6 s for monolayer heaters. From the relationship between the steady-state temperatures and the input power density, a convective heat-transfer coefficient of 60 W·m−2·°C−1 was found, indicating a performance much better than that of many other types of heaters like metal thin-film-based heaters and carbon nanotube-based heaters.

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Cite This Study

Zhang et al. (2019) studied this question.

synapsesocial.com/papers/6a718fccf44fa9f079df5717https://doi.org/10.3390/ma13010104
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