Scalable method enables ultrahigh-resolution quantum dot displays without damaging performance

Scalable method enables ultrahigh-resolution quantum dot displays without damaging performance
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Over the past decade, colloidal quantum dots (QDs) have emerged as promising materials for next-generation displays due to their tunable emission, high brightness, and compatibility with low-cost solution processing. However, a major challenge is achieving ultrahigh-resolution patterning without damaging their fragile surface chemistry. Existing methods such as inkjet printing and photolithography-based processes either fall short in resolution or compromise QD performance.
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