Institute of Materials Science and Nanotechnology - UNAM, Bilkent University, Ankara 06800, Turkey.
Department of Physics, Bilkent University, Ankara 06800, Turkey.
Nanoscale Horiz. 2022 Mar 28;7(4):396-402. doi: 10.1039/d1nh00629k.
The photo-bolometric effect is critically important in optoelectronic structures and devices employing metallic electrodes with nanoscale features due to heating caused by the plasmonic field enhancement. One peculiar case is individual silver nanowires (Ag NWs) and their networks. Ag NW-networks exhibit excellent thermal, electrical, and mechanical properties, providing a simple yet reliable alternative to common flexible transparent electrode materials used in optoelectronic devices. To date, there have been no reports on the photoresponse of Ag NWs. In this study, we show that single Ag NWs and networks of such Ag NWs possess a significant, intrinsic photoresponse, thanks to the photo-bolometric effect, as directly observed and measured using scanning photocurrent microscopy. Surface plasmon polaritons (SPPs) created at the contact metals or plasmons created at the nanowire-metal structures cause heating at the junctions where a plasmonic field enhancement is possible. The local heating of the Ag NWs results in negative photoconductance due to the bolometric effect. Here an open-circuit response due to the plasmon-enhanced Seebeck effect was recorded at the NW-metal contact junctions. The SPP-assisted bolometric effect is found to be further enhanced by decorating the Ag NWs with Ag nanoparticles. These observations are relevant to the use of metallic nanowires in plasmonic applications in particular and in optoelectronics in general. Our findings may pave the path for plasmonics-enabled sensing without spectroscopic detection.
光热效应在采用具有纳米级特征的金属电极的光电结构和器件中非常重要,因为等离子体场增强会导致加热。一个特殊的例子是单个银纳米线(Ag NWs)及其网络。Ag NW 网络具有优异的热、电和机械性能,为光电设备中常用的柔性透明电极材料提供了一种简单而可靠的替代方案。迄今为止,还没有关于 Ag NW 光响应的报道。在这项研究中,我们表明,由于光热效应,单个 Ag NW 及其 Ag NW 网络具有显著的固有光响应,这可以通过扫描光电流显微镜直接观察和测量。在接触金属处产生的表面等离子体激元(SPPs)或在纳米线-金属结构处产生的等离子体在可能存在等离子体场增强的结处引起加热。Ag NW 的局部加热会导致负光电导,这是由于光热效应。在这里,在 NW-金属接触结处记录了由于等离子体增强的塞贝克效应而产生的开路响应。发现通过用 Ag 纳米颗粒装饰 Ag NWs 可以进一步增强 SPP 辅助的光热效应。这些观察结果与在等离子体应用中特别是在光电学中使用金属纳米线有关。我们的发现可能为无需光谱检测的等离子体传感铺平道路。