Zong-Xiao Li
Papers
1
Total Citations
106
H-Index
1
About
Zong-Xiao Li is a leading researcher in optoelectronics and nanophotonics, with a focus on developing advanced memory devices that bridge the gap between photonics and electronics. Their most notable contribution is the creation of infrared-sensitive memory based on a direct-grown MoS₂–upconversion-nanoparticle heterostructure, a breakthrough that enables photonic memories to operate beyond the visible spectrum. This work, published in 2018 and cited over 100 times, addresses the critical challenge of overcoming the von Neumann bottleneck by leveraging infrared light for data storage and processing. Li’s research has significant implications for decryption technology, neuromorphic computing, and next-generation optical communication systems. By integrating two-dimensional materials with upconversion nanoparticles, they have pioneered a new class of hybrid devices that combine the sensitivity of MoS₂ with the wavelength-conversion capabilities of nanoparticles, achieving efficient infrared-light-induced memory effects. Their work is widely recognized for its innovation in expanding the spectral range of photonic memories, offering a pathway toward faster, more energy-efficient computing architectures. Li’s contributions continue to inspire advancements in optoelectronic memory and light-driven logic systems.
Research Focus
Key Achievements
Top Papers
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