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Achieving High‐Performance Multi‐Resonance Thermally Activated Delayed Fluorescence (MR‐TADF) Blue Emitter Using Benzothiophene Heterocyclic Fusion Strategy
Conflicts of Interest The authors declare no conflicts of interest. Data Availability Statement The data that support the findings of this study are available on request from the corresponding author. The data are not publicly available due to privacy or ethical restrictions. Supporting Information Filename Description anie71663-sup-0001-SuppMat.docx5.4 MB Supporting File 1: The authors have cited additional references within the Supporting Information [1–13].
Highly Sensitive Thianthrene Covalent Trimer Room‐Temperature Phosphorescent Materials for Low‐Concentration Oxygen Detection
Supporting Information As a service to our authors and readers, this journal provides supporting information supplied by the authors. Such materials are peer reviewed and may be re-organized for online delivery, but are not copy-edited or typeset. Technical support issues arising from supporting information (other than missing files) should be addressed to the authors.
Achieving High-performance Narrowband Blue MR-TADF Emitter by Suppressing Isomer Formation and Extending π-conjugate Skeleton
Achieving High-performance Narrowband Blue MR-TADF Emitter by Suppressing Isomer Formation and Extending π-conjugate Skeleton Kaiyuan Di, Runda Guo, Yaxiong Wang, Yingbo Lv, Hanrui Su, Qiang Zhang, Bing Yang and Lei Wang Abstract Multiple resonance thermally activated delayed fluorescence (MR-TADF) emitters show great application potential in high color purity and high-resolution organic light-emitting diodes (OLEDs) display.
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