Papers
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6
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About
Yang Yufan is a rising researcher in the field of advanced materials and flexible electronics, with a particular focus on laser-induced graphene (LIG) technologies. His most cited work, "Experimental study of flexible sensors based on ultraviolet nanosecond laser induced graphene" (2024), has already garnered 6 citations, showcasing early impact in a rapidly evolving domain. Yufan’s primary contributions lie in the development of high-performance, flexible sensors fabricated via ultraviolet nanosecond laser processing—a method that enables precise, scalable, and cost-effective production of graphene-based sensing elements. His research addresses critical challenges in wearable electronics, such as sensitivity, durability, and integration with flexible substrates. By optimizing laser parameters and material properties, Yufan has advanced the practical application of LIG for strain, temperature, and chemical sensing. His work not only demonstrates the viability of UV nanosecond lasers for graphene synthesis but also paves the way for next-generation smart textiles and biomedical monitors. As an emerging voice in materials science, Yufan’s findings are already influencing sensor design and manufacturing, promising to bridge the gap between laboratory innovation and real-world wearable technology.
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