摩擦电效应
电化学发光
材料科学
接口(物质)
信号(编程语言)
纳米发生器
纳米技术
光电子学
反褶积
可视化
能量(信号处理)
计算机科学
电极
透视图(图形)
信号处理
重点(电信)
纳米传感器
作者
Congyu Wang,赵建猛,Yue Yu,Haiqian Lin,Ting Hou,Panpan Gai,Feng Li
摘要
Understanding the nature of electrode-electrolyte interface remains a long-sought goal in electrochemistry, as it could help to address major societal challenges of our time, such as the global energy and environmental crisis. Electrochemiluminescence (ECL) imaging enables the direct visualization of the electrode-electrolyte interface, rather than inferring active sites from morphology or surface chemistry. However, the signal decay and limited stability of ECL signals restrict their practical application. Here, by utilizing the high-frequency pulsed output of a triboelectric nanogenerator (TENG), we developed a TENG-based electrochemiluminescence (TECL) imaging inspired by the cardiac diastole-systole cycle. The TECL signal overcomes the limitations of traditional ECL and employs a zero-shot deconvolution network (ZS-DeconvNet) to achieve super-resolution TECL (ZSSR-TECL) imaging. Utilizing the ZSSR-TECL imaging, the catalytic regions at the electrode-electrolyte interface can be analyzed, with high-activity, moderate-activity, and degraded regions clearly distinguished. In addition, three methods have been established for analyzing the catalytic activity of the electrode-electrolyte interface, including direct observation of TECL images, analysis of signal intensity profiles, and quantification of total signal intensity in fixed regions. The TECL imaging has the potential to enable the research of electrode-electrolyte interfaces and offers a perspective for enhancing ECL imaging.
科研通智能强力驱动
Strongly Powered by AbleSci AI