Abstract

Advanced materials play a crucial role in the development of next-generation electronics and photonics due to their unique physical and chemical properties. This review highlights recent advances in the processing of advanced materials, including two-dimensional materials, organic semiconductors, and perovskites, for their integration into electronic and photonic devices. Specifically, we discuss the methods of material synthesis, characterization, and device fabrication, as well as their applications in transistors, photovoltaics, light-emitting diodes, and sensors. We also address the challenges and opportunities associated with the development of advanced materials for the future of electronics and photonics.

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