TY - JOUR
T1 - Visualization of Electrical Trees
T2 - Oxygen Metabolism Insights and Organic Room Temperature Phosphorescent Materials
AU - Li, Nan
AU - Wang, Yunsheng
AU - Chen, Siyuan
AU - Li, Jin
AU - Li, Zhen
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025/12/22
Y1 - 2025/12/22
N2 - Electrical treeing, manifesting as Lichtenberg figures (LFs) is a major cause of dielectric failure in power, communication, and aerospace systems. Visualization of LF evolution has been hindered by passive imaging limits. Here, we introduce phosphorescence imaging of Lichtenberg figures (PI-LF), which maps both structural damage and localized oxygen depletion via high-contrast luminescent signals. Guided by a mechanistic understanding of oxygen metabolism in photoactivated phosphorescent systems, indole-core dopants with tunable chromaticity reveal dual oxygen pathways: energy transfer to singlet oxygen and electron transfer to superoxide radicals. Polymer systems doped with these luminophores resolve fine structural progression of electrical trees, enabling bioimaging-style analysis that uncovers a previously hidden spherical-layered growth mode. PI-LF bridges molecular photophysics and high-voltage engineering, establishing a paradigm for luminescence-based visualization of dielectric breakdown.
AB - Electrical treeing, manifesting as Lichtenberg figures (LFs) is a major cause of dielectric failure in power, communication, and aerospace systems. Visualization of LF evolution has been hindered by passive imaging limits. Here, we introduce phosphorescence imaging of Lichtenberg figures (PI-LF), which maps both structural damage and localized oxygen depletion via high-contrast luminescent signals. Guided by a mechanistic understanding of oxygen metabolism in photoactivated phosphorescent systems, indole-core dopants with tunable chromaticity reveal dual oxygen pathways: energy transfer to singlet oxygen and electron transfer to superoxide radicals. Polymer systems doped with these luminophores resolve fine structural progression of electrical trees, enabling bioimaging-style analysis that uncovers a previously hidden spherical-layered growth mode. PI-LF bridges molecular photophysics and high-voltage engineering, establishing a paradigm for luminescence-based visualization of dielectric breakdown.
KW - Electrical tree visualization
KW - Oxygen metabolism
KW - Room temperature phosphorescence
UR - https://www.scopus.com/pages/publications/105020811838
U2 - 10.1002/anie.202520504
DO - 10.1002/anie.202520504
M3 - 文章
AN - SCOPUS:105020811838
SN - 1433-7851
VL - 64
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 52
M1 - e202520504
ER -