Yingnan Yan
Papers
1
Total Citations
3
H-Index
1
About
Yingnan Yan is a materials scientist whose research focuses on advanced energy storage systems, particularly flexible supercapacitors and novel electrode materials. Yan’s most cited work, “Electrostatically assembled nanoflower-like MXene/NiCu-layered double hydroxide composite thin-film: A high capacitive energy storage for flexible supercapacitors” (2024), introduces a groundbreaking approach to fabricating high-performance, flexible energy storage devices. By electrostatically assembling MXene nanosheets with NiCu-layered double hydroxide into a nanoflower-like composite thin-film, Yan achieved exceptional capacitive performance, addressing key challenges in energy density and mechanical flexibility for wearable electronics. This work, which has garnered 3 citations since its publication, demonstrates Yan’s ability to design innovative nanostructures that synergize the conductivity of MXenes with the pseudocapacitive properties of layered double hydroxides. Yan’s contributions are particularly notable for advancing the practical application of supercapacitors in flexible and portable devices, offering a scalable pathway for next-generation energy storage. Through this research, Yan has established a reputation for creating multifunctional composite materials that bridge fundamental electrochemistry with real-world device engineering, making a significant impact on the field of sustainable energy technologies.
Research Focus
Key Achievements
Top Papers
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