Dinh Xuan Hiep, Timothy Bernard, Park Ho-Yeol, Lam Tuyet Nhi, Kim Dowan, Go Yeonjeong, Kim Jongyoun, Lee Youngu, Ahn Sung Il, Jin Sung-Ho, Yoon Jinhwan
Graduate Department of Chemical Materials, Institute for Plastic Information and Energy Materials, Sustainable Utilization of Photovoltaic Energy Research Center, Pusan National University, Busan, 46241, Republic of Korea.
Department of Energy Science & Engineering, DGIST, 333, Techno Jungang Daero, Hyeonpung-Myeon, Dalseong-Gun, Daegu, 42988, Republic of Korea.
Adv Mater. 2021 Jun;33(25):e2008849. doi: 10.1002/adma.202008849. Epub 2021 May 13.
Ionogels are good candidates for flexible electronics owing to their excellent mechanical and electrical properties, including stretchability, high conductivity, and stability. In this study, conducting ionogels comprising a double network (DN) of poly(N-isopropylacrylamide-co-N,N'-diethylacrylamide)/chitosan which are further reinforced by the ionic and covalent crosslinking of the chitosan network by tripolyphosphate and glutaraldehyde, respectively, are prepared. Based on their excellent mechanical properties and high conductivity, the developed DN ionogels are envisioned as stretchable ionic conductors for extremely stretchable alternating-current electroluminescent (ACEL) devices. The ACEL device fabricated with the developed ionogel exhibits stable working operation under an ultrahigh elongation of over 1200% as well as severe mechanical deformations such as bending, rolling, and twisting. Furthermore, the developed ACEL devices also display stable luminescence over 1000 stretch/release cycles or at temperatures as harsh as 200 °C.
离子凝胶因其优异的机械和电学性能,包括拉伸性、高导电性和稳定性,是柔性电子器件的理想候选材料。在本研究中,制备了一种导电离子凝胶,它由聚(N-异丙基丙烯酰胺-co-N,N'-二乙基丙烯酰胺)/壳聚糖的双网络(DN)组成,壳聚糖网络分别通过三聚磷酸钠和戊二醛进行离子交联和共价交联进一步增强。基于其优异的机械性能和高导电性,所开发的DN离子凝胶被设想为用于极端可拉伸交流电致发光(ACEL)器件的可拉伸离子导体。用所开发的离子凝胶制造的ACEL器件在超过1200%的超高伸长率以及弯曲、滚动和扭曲等严重机械变形下表现出稳定的工作运行。此外,所开发的ACEL器件在1000次拉伸/释放循环或高达200°C的苛刻温度下也能显示出稳定的发光。