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基于具有优异机械柔韧性和化学稳定性的 CuS 纳米片薄膜的高响应透明加热器。

A high-response transparent heater based on a CuS nanosheet film with superior mechanical flexibility and chemical stability.

机构信息

Research Institute for Soft Matter and Biomimetics, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Department of Physics, Xiamen University, Xiamen 361005, China.

出版信息

Nanoscale. 2018 Apr 5;10(14):6531-6538. doi: 10.1039/c7nr09667d.

Abstract

Transparent heaters are widely used in technologies such as window defrosting/defogging, displays, gas sensing, and medical equipment. Apart from mechanical robustness and electrical and optical reliabilities, outstanding chemical stability is also critical to the application of transparent heaters. In this regard, we first present a highly flexible and large-area CuS transparent heater fabricated by a colloidal crackle pattern method with an optimized sheet resistance (Rs) as low as 21.5 Ω sq-1 at a ∼80% transmittance. The CuS transparent heater exhibits remarkable mechanical robustness during bending tests as well as high chemical stability against acid and alkali environments. In the application as a transparent heater, the CuS heater demonstrates a high thermal resistance of 197 °C W-1 cm2 with a fast switching time (<30 s), requiring low input voltages (<4.5 V) to achieve uniform temperatures of ∼110 °C across large areas. The temperature of the wearable CuS heater, which is stuck on the skin, can be real-time controlled through a Bluetooth device in a cell phone wirelessly. Based on the wireless control system, we demonstrated an application of the CuS heater in snow removal for solar panels. These CuS network TCEs with high flexibility, transparency, conductivity, and chemical stability could be widely used in wearable electronic products.

摘要

透明加热器广泛应用于车窗除霜/除雾、显示器、气体传感和医疗设备等技术领域。除了机械强度、电气和光学可靠性外,出色的化学稳定性对于透明加热器的应用也至关重要。在这方面,我们首先展示了一种由胶体裂纹图案法制备的高度灵活且大面积的 CuS 透明加热器,其优化后的方块电阻 (Rs) 低至 21.5 Ω sq-1,透光率约为 80%。CuS 透明加热器在弯曲测试中表现出出色的机械强度以及对酸碱环境的高化学稳定性。在透明加热器的应用中,CuS 加热器具有 197 °C W-1 cm2 的高热阻,开关时间快(<30 s),只需低输入电压(<4.5 V)即可在大面积上实现均匀的约 110 °C 温度。贴在皮肤上的可穿戴 CuS 加热器的温度可以通过手机中的蓝牙设备进行实时无线控制。基于无线控制系统,我们展示了 CuS 加热器在太阳能电池板除雪方面的应用。这些具有高柔韧性、透明度、导电性和化学稳定性的 CuS 网络 TCE 可以广泛应用于可穿戴电子产品。

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