Publications by authors named "Janghyun Ju"

A novel method for synthesizing and refining high-purity carbon quantum dots (CQDs) using citric acid and diethylenetriamine as precursors is presented, achieved through molecular-level control by exploiting the differences in hydrogen-bonding strength. This process involves precipitation using melamine, extraction into ethanol, and encapsulation with (3-aminopropyl)triethoxysilane (APTES). The resulting APTES-encapsulated CQDs exhibited an enhanced color purity, higher photoluminescence quantum yield, and improved fluorescence stability over a broad pH range.

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Article Synopsis
  • Advanced transparent conductors are being developed to improve electrical conductivity and mechanical flexibility using conductive nanomaterials and innovative structures.
  • A new liquid-mediated patterning technique allows for the efficient, single-step printing of silver grids on curved surfaces at a submicrometer resolution, overcoming challenges faced by traditional 2D lithography methods.
  • The printed grids demonstrate excellent performance in optical, electrical, and Joule-heating applications, suggesting a promising future for low-cost, liquid-processed 3D optoelectronics.
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To improve the throughput of microwell arrays for identifying immense cellular diversities even at a single-bacteria level, further miniaturization or densification of the microwells has been an obvious breakthrough. However, controlling millions of nanoliter samples or more at the microscale remains technologically difficult and has been spatially restricted to a single open side of the microwells. Here we employed a stepped through-hole membrane to utilize the bottom as well as top side of a high-density nanoliter microwell array, thus improving spatial efficiency.

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