Choi Jiyun, Bang Geumhyuck, Lee Taehyeong, Tran Vo Thi Bao, Bae Jong-Seong, Choi Dooho
School of Advanced Materials Engineering, Dong-Eui University, 176 Eomgwangro, Busan 47340, South Korea.
Korea Basic Science Institute (Busan Center), 1 Gwahaksandanro, Busan 46742, South Korea.
Nano Lett. 2022 Apr 13;22(7):3133-3140. doi: 10.1021/acs.nanolett.2c00592. Epub 2022 Apr 1.
A methodology for the simultaneous modulation of the chemical and physical states of an amorphous TiO layer surface and its impact on the subsequent deposition of a polycrystalline Ag layer are presented. The smoothened TiO layer surface comprising chemically altered, oxygen-deficient states serves as a nucleating platform for Ag deposition, facilitating a marked increase (∼75%) in the nucleation number density, which strongly enhances the wettability of ultrathin Ag layers. The physically smoothened TiO/Ag interface further reduces the optical and electrical losses. When the proposed methodology is applied to TiO/Ag/ZnO transparent conductive electrodes (TCEs), exceptional TCE properties are yielded owing to the simultaneous improvement in visible transparency and electrical conductivity; specifically, a record-high 0.22 Ω Haacke figure of merit is realized. TCEs are prepared on flexible substrates to verify their applicability as stand-alone flexible transparent heaters and as integrated heaters within electrochromic devices to enhance color-switching reactions.
本文提出了一种同时调制非晶TiO层表面化学和物理状态的方法及其对后续多晶Ag层沉积的影响。包含化学改变的缺氧状态的平滑TiO层表面作为Ag沉积的成核平台,促进成核数密度显著增加(约75%),这极大地提高了超薄Ag层的润湿性。物理平滑的TiO/Ag界面进一步降低了光学和电学损耗。当将所提出的方法应用于TiO/Ag/ZnO透明导电电极(TCE)时,由于同时提高了可见光透明度和电导率,产生了优异的TCE性能;具体而言,实现了创纪录的0.22 Ω哈克优值。在柔性基板上制备TCE,以验证其作为独立柔性透明加热器以及作为电致变色器件内集成加热器以增强颜色切换反应的适用性。