KAIST

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KAIST reveals how the light-responsive molecular switch azobenzene changes shape

KAIST identifies a “hidden amplification switch” in lymphangiogenic signaling, with implications for lymphedema and cancer metastasis

KAIST develops AI chip that recognizes changes in motion over time

KAIST extends lifespan of graphite-free anode-free batteries that could make EV batteries smaller and lighter

KAIST develops a strategy to balance radical generation and catalyst regeneration, enabling challenging chemical reactions

KAIST and KIOM develop a wearable microneedle electroceutical for personalized pain management

KAIST and KIOM develop a wearable microneedle electroceutical for personalized pain management

KAIST develops AI that can sense “that’s not what I meant” without being told

KAIST develops AI that can sense “that’s not what I meant” without being told

KAIST develops AI technology that fixes SQL errors without starting over

KAIST tames a semiconductor greenhouse gas 6,000 times more potent than CO₂ with the ‘power of disorder’

KAIST develops a soft, 3D-printed robotic hand that gently grips everything from eggs to a 1 kg water bottle

KAIST opens the era of industrial-scale microbial foods, proposing growth strategies for the next-generation protein market

KAIST opens the era of industrial-scale microbial foods, proposing growth strategies for the next-generation protein market

KAIST develops smartphone-based technology to detect hidden cameras

KAIST develops smartphone-based technology to detect hidden cameras

KAIST uses light to distinguish real from fake with hard-to-replicate “artificial fingerprints”

KAIST identifies a route to faster-charging, longer-lasting EV batteries

KAIST uses surface ‘defects’ to enhance droplet formation and removal, achieving up to 5.5 times the heat transfer performance of conventional surfaces

KAIST develops core technology to reverse biological changes once thought irreversible, opening new possibilities for aging and cancer research