Muhammed Ajmal C, Jeong Juyeong, Cheon Seongsu, Majee M K, Yang Heejun, Baik Seunghyun
Center for Nanotubes and Nanostructured Composites, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Department of Physics, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Adv Sci (Weinh). 2024 Dec;11(48):e2409337. doi: 10.1002/advs.202409337. Epub 2024 Oct 28.
The intrinsic resistance of stretchable materials is dependent on strain, following Ohm's law. Here the invariable resistance of highly conductive cross-linked nanocomposites over 53% strain is reported, where additional electron scattering is absent with stretching. The in situ generated uniformly dispersed small silver nanosatellite particles (diameter = 3.6 nm) realize a short tunneling barrier width of 4.1 nm in cross-linked silicone rubber matrix. Furthermore, the barrier height can be precisely controlled by the gap state energy level modulation in silicone rubber using cross-linkers. The negligible barrier height (0.01 eV) and short barrier width, achieved by the silver nanosatellite particles in cross-linked silicone rubber, dramatically increase the electrical conductivity (51 710 S cm) by more than 4 orders of magnitude. The high conductance is also maintained over 53% strain. The quantum tunneling behavior is observed when the barrier height is increased, following the Simmons approximation theory. The transport becomes diffusive, following Ohm's law, when the barrier width is increased beyond 10.3 nm. This study provides a novel strain-invariant resistance mechanism in highly conductive cross-linked nanocomposites.
可拉伸材料的本征电阻遵循欧姆定律,取决于应变。本文报道了一种高导电性交联纳米复合材料在超过53%应变下具有不变电阻的情况,拉伸时不存在额外的电子散射。原位生成的均匀分散的小银纳米卫星颗粒(直径 = 3.6纳米)在交联硅橡胶基质中实现了4.1纳米的短隧穿势垒宽度。此外,通过使用交联剂对硅橡胶中的能隙态能级进行调制,可以精确控制势垒高度。交联硅橡胶中的银纳米卫星颗粒实现了可忽略不计的势垒高度(0.01电子伏特)和短势垒宽度,使电导率(51710 S/cm)显著提高了4个多数量级。在超过53%应变时也能保持高电导率。根据西蒙斯近似理论,当势垒高度增加时,观察到量子隧穿行为。当势垒宽度增加到超过10.3纳米时,传输遵循欧姆定律变为扩散性的。本研究为高导电性交联纳米复合材料提供了一种新型的应变不变电阻机制。