Department of Manufacturing Systems and Design Engineering, Seoul National University of Science and Technology, Seoul 139-743, Republic of Korea.
Graduate School of Nano IT Design Fusion, Seoul National University of Science and Technology Seoul, 139-743, Korea.
J Nanosci Nanotechnol. 2021 May 1;21(5):2959-2968. doi: 10.1166/jnn.2021.19135.
This study explored the feasibility of a fast and uniform large-scale laser sintering method for sintering stretchable electrodes. A homogenized rectangular infrared (IR) laser with a wavelength of 980 nm was used in the sintering process. A highly stretchable composite electrode was fabricated using silver (Ag) microparticles and Ag flakes as the fillers and polyester resin as the binder on the polyurethane substrate. This laser-sintering method showed a sintering time of 1 sec and a very uniform temperature across the surface, resulting in enhancing the conductivity and stretchability of the electrodes. The effects of the laser power on the electrical and electromechanical properties of the electrodes were investigated. Using stretching, bending, and twisting tests, the feasibility of the laser-sintered stretchable electrodes was comprehensively examined. The electrode that was sintered at a laser power of 50 W exhibited superior stretchability at a strain of 210%, high mechanical endurance of 1,000 repeated cycles, and excellent adhesion. The stretchable electrodes showed excellent bendability and twistability in which the electrodes can be bent up to 1 mm and twisted up to 90° without any damage; thus, they are highly applicable as stretchable electrodes for wearable electronics. Additionally, the Ag composites were explored for use in a radio-frequency (RF) stretchable antenna to confirm the application of the laser-sintering method for stretchable and wearable electronic devices. The stretchable dipole antenna showed an excellent radiation efficiency of 95% and a highly stable operation, even when stretched to 90% strain.
本研究探索了一种快速、均匀的大规模激光烧结方法用于烧结可拉伸电极的可行性。在烧结过程中使用了波长为 980nm 的均匀矩形红外(IR)激光。在聚氨酯基底上,使用银(Ag)微球和 Ag 薄片作为填充剂以及聚酯树脂作为粘结剂,制备了一种高可拉伸的复合电极。这种激光烧结方法显示出 1 秒的烧结时间和非常均匀的表面温度,从而提高了电极的导电性和可拉伸性。研究了激光功率对电极的电和机电性能的影响。通过拉伸、弯曲和扭曲测试,全面检查了激光烧结可拉伸电极的可行性。在激光功率为 50W 的情况下烧结的电极在应变 210%时表现出优异的可拉伸性、1000 次重复循环的高机械耐久性和优异的附着力。可拉伸电极在弯曲和扭曲方面表现出优异的柔韧性,其中电极可以弯曲至 1mm 并扭曲至 90°而不会造成任何损坏;因此,它们非常适用于可穿戴电子产品的可拉伸电极。此外,还研究了 Ag 复合材料在射频(RF)可拉伸天线中的应用,以确认激光烧结方法在可拉伸和可穿戴电子设备中的应用。可拉伸偶极天线显示出 95%的优异辐射效率和高度稳定的操作,即使在拉伸至 90%应变时也是如此。