IIT-CBN-Fondazione Istituto Italiano di Tecnologia-Center for Biomolecular Nanotechnologies , via Barsanti 14 , 73010 Arnesano , Lecce , Italy.
IIT-NCH-Fondazione Istituto Italiano di Tecnologia-Nanochemistry Department , via Morego 30 , 16163 Genova , Italy.
ACS Appl Mater Interfaces. 2019 Oct 30;11(43):39921-39929. doi: 10.1021/acsami.9b12890. Epub 2019 Oct 15.
Nanocrystals (NCs) of transparent conducting oxides with a localized surface plasmon resonance (LSPR) in the near-infrared (NIR) spectral region show promising electrochromic properties for the development of a new generation of dynamic "smart windows". In this regard, we exploit thin films of F, In-codoped CdO (FICO) NCs as active coatings for electrochromic devices. The control over the dopants concentration in FICO NCs results in fine tuning of their LSPR across the NIR region of the electromagnetic spectrum. Highly transparent mesoporous electrodes were prepared from colloidal FICO NCs by in situ ligand exchange of the pristine organic capping ligands. This approach preserves the optical and electrical properties of native NCs and delivers highly homogeneous, nonscattering films with a good electronic coupling between the NCs. We achieved a dynamic control over the LSPR frequency by reversible electrochemical doping, hence a spectrally selective modulation of the optical transmittance in the NIR region of the solar spectrum, which carries nearly 50% of the whole solar heat. Spectroelectrochemical characterization, coloration efficiency, and switching kinetics results indicate that thin film based on FICO NCs are potential candidates for plasmonic electrochromic applications. Moreover, the high electron mobility and wide optical bandgap of FICO makes NCs of this material suitable for large-area devices capable of dynamically controlling the heat load coming from the solar infrared radiation, without affecting the visible light transmittance.
具有局域表面等离子体共振 (LSPR) 的透明导电氧化物纳米晶体 (NCs) 在近红外 (NIR) 光谱区域显示出有前途的电致变色性能,可用于开发新一代动态“智能窗”。在这方面,我们利用掺氟、掺铟的 CdO (FICO) NCs 的薄膜作为电致变色器件的活性涂层。通过控制 FICO NCs 中的掺杂剂浓度,可以精细调整其在电磁光谱近红外区域的 LSPR。通过原位配体交换原始有机封端配体,从胶体 FICO NCs 制备出高度透明的介孔电极。这种方法保留了 NCs 的光学和电学性能,并提供了高度均匀、无散射的薄膜,具有 NCs 之间良好的电子耦合。我们通过可逆电化学掺杂实现了对 LSPR 频率的动态控制,从而在太阳光谱的近红外区域对光透射率进行光谱选择性调制,该区域几乎包含了 50%的太阳热能。光谱电化学表征、着色效率和开关动力学结果表明,基于 FICO NCs 的薄膜是等离子体电致变色应用的潜在候选材料。此外,FICO 的高电子迁移率和宽光学带隙使这种材料的 NCs 适合用于大面积器件,能够动态控制来自太阳红外辐射的热负荷,而不会影响可见光透射率。