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Mr. Chun Sun: Nanophotonics & Nanoelectronics

Chun Sun, holding a B.Sc. in Chemistry from Shandong University of Science and Technology (2008), pursued an M.Sc. in Inorganic Chemistry at Jilin University (2012) and earned a Ph.D. in Electronics from Jilin University in 2014. His research expertise revolves around inorganic nanomaterials, particularly perovskite quantum dots and carbon dots. Chun Sun’s work is marked by a keen focus on the practical application of these materials in Light Emitting Diodes (LEDs), showcasing a profound understanding of electronics and nanotechnology. His contributions reflect a commitment to advancing the field with innovative applications. šŸŒšŸ”šŸŒˆ

šŸŽ“ Educational Details:

B.Sc. in Chemistry, Shandong University of Science and Technology, 2008. M.Sc. in Inorganic Chemistry, Jilin University, 2012. Ph.D. in Electronics, Jilin University, 2014

šŸ”¬ Research Interests:

Chun Sun’s research primarily focuses on inorganic nanomaterials, specializing in perovskite quantum dots and carbon dots. His work extends to the application of these materials in Light Emitting Diodes (LEDs), showcasing a comprehensive understanding of electronics and nanotechnology. šŸŒšŸ”šŸŒˆ

Professional Profiles:

The impact of her research is evident in citation metrics and indices from Google Scholar:

  • Cited by: All ā€“ 4,098.
  • Citations ā€“ 3196.
  • h-index ā€“ 26.
  • Documents ā€“ 55.

A prolific researcher making meaningful contributions to the academic world!

Research Focus:

šŸ”¬ With a knack for cutting-edge materials science, this researcher spearheads the synthesis of Mn2+ doped ultrathin (n = 2) Nanoplatelets (NPLs), presenting a facile method in 2022, cited seven times. Their innovative approach extends to the application of these NPLs in anti-counterfeiting technologies, showcasing a dedication to functional materials with real-world applications. ā˜€ļø In the same year, their expertise converges on Mn-doped multiple quantum well perovskites, contributing to the field of luminescent solar concentrators, with five citations. This multifaceted approach demonstrates a commitment to advancing solar energy technologies. šŸŒˆ Furthermore, their exploration encompasses high-performance visible-to-near-infrared light detectors based on Au/SnS/Ag Schottky structures, revealing an interest in optoelectronic devices with ultrahigh responsivity and fast response. šŸ¤– Lastly, the application of Convolutional Neural Networks in an algorithm for redshift estimation of photometric images showcases a foray into cutting-edge computational techniques, solidifying their position at the intersection of materials science and artificial intelligence.

Publications Top Note:

 

 

Chun Sun | Nanophotonics & Nanoelectronics | Best Researcher Award

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