Maolin Li
Papers
2
Total Citations
18
H-Index
2
About
Maolin Li is a rising researcher in the field of optoelectronic materials, with a primary focus on the design and characterization of flexible organic crystals for advanced photonic applications. Their major contribution lies in pioneering the development of low-temperature-resistant flexible crystals that simultaneously exhibit highly efficient second-harmonic generation (SHG)—a critical nonlinear optical (NLO) property. Prior to Li’s work, no such material existed that could combine mechanical flexibility with robust NLO performance under cryogenic conditions. This breakthrough opens new avenues for integrating these crystals into flexible optoelectronics, soft robotics, and next-generation sensors that must operate in extreme environments. Li’s most-cited paper (2024, 15 citations) has already drawn attention for addressing this long-standing gap, while a closely related follow-up (3 citations) further validates the approach. By merging chirality, mechanical compliance, and optical nonlinearity, Li’s research not only pushes the boundaries of crystal engineering but also provides a practical pathway toward durable, high-performance photonic devices. Their work is particularly notable for its potential to inspire future studies on multifunctional flexible materials, marking Li as a promising innovator in the intersection of materials science and photonics.
Research Focus
Key Achievements
Top Papers
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