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用于透明和柔性场驱动电子器件的聚合物层压TiCT MXene电极

Polymer-Laminated TiCT MXene Electrodes for Transparent and Flexible Field-Driven Electronics.

作者信息

Lee Seokyeong, Kim Eui Hyuk, Yu Seunggun, Kim Hyerim, Park Chanho, Lee Seung Won, Han Hyowon, Jin Wookyoung, Lee Kyuho, Lee Chang Eun, Jang Jihye, Koo Chong Min, Park Cheolmin

机构信息

Department of Materials Science and Engineering, Yonsei University, Yonsei-ro 50, Seodaemun-gu, Seoul 03722, Republic of Korea.

Insulation Materials Research Center, Korea Electrotechnology Research Institute, Bulmosan-ro 10-gil 12, Seongsan-gu, Changwon-si, Gyeongsangnam-do 51543, Korea.

出版信息

ACS Nano. 2021 May 25;15(5):8940-8952. doi: 10.1021/acsnano.1c01621. Epub 2021 May 13.

DOI:10.1021/acsnano.1c01621
PMID:33983015
Abstract

MXenes (TiCT) are two-dimensional transition-metal carbides and carbonitrides with high conductivity and optical transparency. However, transparent MXene electrodes with high environmental stability suitable for various flexible organic electronic devices have rarely been demonstrated. By laminating a thin polymer film onto a solution-processed MXene layer to protect the MXene film from harsh environmental conditions, we present transparent and flexible MXene electronic devices. A thin polymer layer spin-coated onto a transparent MXene electrode provides environmental stability even under air exposure longer than 7 d at high temperatures (up to 70 °C) and humidity levels (up to 50%) without degrading the transparency of the electrode. The resulting polymer-laminated (PL) MXene electrode facilitates the development of a variety of field-driven photoelectronic devices by exploiting the electric field exerted between the MXene layer and the counter electrode through the insulating polymer. Field-induced electroluminescent displays, based on both organic and inorganic phosphors, with PL-MXene electrodes are demonstrated with high transparency and mechanical flexibility. Furthermore, our PL-MXene electrode exhibits high versatility through successful implementation in capacitive-type pressure sensors and triboelectric nanogenerators, resulting in field-driven sensing and energy harvesting electronic devices with excellent operation reliability.

摘要

MXenes(TiCT)是具有高导电性和光学透明度的二维过渡金属碳化物和碳氮化物。然而,适用于各种柔性有机电子器件的具有高环境稳定性的透明MXene电极却鲜有报道。通过在溶液处理的MXene层上叠层一层薄聚合物膜,以保护MXene膜免受恶劣环境条件的影响,我们展示了透明且柔性的MXene电子器件。旋涂在透明MXene电极上的薄聚合物层即使在高温(高达70°C)和高湿度(高达50%)下暴露于空气中超过7天,也能提供环境稳定性,且不会降低电极的透明度。所得的聚合物叠层(PL)MXene电极通过利用穿过绝缘聚合物在MXene层和对电极之间施加的电场,促进了各种场驱动光电器件的开发。基于有机和无机磷光体的、带有PL-MXene电极的场致电致发光显示器被证明具有高透明度和机械柔韧性。此外,我们的PL-MXene电极通过在电容式压力传感器和摩擦纳米发电机中的成功应用展现出了高度的通用性,从而实现了具有出色操作可靠性的场驱动传感和能量收集电子器件。

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