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Y. J. Kim et al., Enlarged Color Gamut Representation Enabled by Transferable Silicon Nanowire Arrays on Metal−Insulator−Metal Films, ACS Appl. Mater. Interfaces 11, 11849 (2019).
G. J. Lee et al., Colored, Daytime Radiative Coolers with Thin-Film Resonators for Aesthetic Purposes, Adv. Opt. Mater. 1800707 (2018).
Y. J. Kim et al., Efficient Light Absorption by GaN Truncated Nanocones for High Performance Water Splitting Applications, ACS Appl. Mater. Interfaces 10, 28672 (2018).
K. J. Ko et al., High-performance, color-tunable fiber shaped organic light-emitting diodes, Nanoscale (2018)
B. H. Kim et al., Three-Dimensional Silicon Electronic Systems Fabricated by Compressive Buckling Process, ACS Nano 12, 5 (2018).
G. J. Lee et al., Bioinspired Artificial Eyes: Optic Components, Digital Cameras, and Visual Prostheses, Adv. Funct. Mater. 28, 24 (2018).
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B. H. Kim et al., Dry Transient Electronic Systems by Use of Materials that Sublime, Adv. Funct. Mater. 27, 1606008 (2017).
J.-K. Song et al., Wearable Force Touch Sensor Array Using a Flexible and Transparent Electrode, Adv. Funt. Mater. 27, 6 (2017).
Y. J. Yoo et al., Ultra-thin films with highly absorbent porous media fine-tunable for coloration and enhanced color purity, Nanoscale 9, 9 (2017).
K. W. Choi et al., Super-Antireflective Structure Films with Precisely Controlled Refractive Index Profile, Adv. Opt. Mater., 5(3) (2016).
K.-I. Jang et al., Ferromagnetic, Folded Electrode Composite as a Soft Interface to the Skin for Long-Term Electrophysiological Recording, Adv. Funt. Mater., 26(34), 7281-7290 (2016).
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K.I. Jang et al., Rugged and breathable forms of stretchable electronics with adherent composite substrates for transcutaneous monitoring, Nat. Commun. 5, 4779 (2014).
Y. Zhang et al., Experimental and Theoretical Studies of Serpentine Microstructures Bonded To Prestrained Elastomers for Stretchable Electronics, Adv. Funct. Mater. 24, 2028 (2014).
J. W. Leem et al., Biomimetic artificial Si compound eye surface structures with broadband and wide-angle antireflection properties for Si-based optoelectronic applications, Nanoscale 5, 10455 (2013)
Y. M. Song et al., Digital cameras with designs inspired by the Arthropod eye, Nature 497, 95 (2013).
T.-I. Kim et al., Injectable, cellular-scale optoelectronics with applications for wireless optogenetics, Science 340, 211 (2013).
R.-H. Kim et al., Flexible vertical light emitting diodes, Small 8, 3123 (2012).
S.-W. Hwang et al., A physically transient form of silicon electronics, Science 337, 1459 (2012).
K. Choi et al., Nano-tailoring the surface structure for the monolithic high-performance antireflection polymer film, Adv. Mater. 22, 3713 (2010).
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Selected Research Highlight
Nature, News & Views 'Seeing the world through an insect's eye'
An elegant combination of electronics and elastic materials has been used to construct a small visual sensor that closely resembles an insect’s eye. The device paves the way for autonomous navigation of tiny aerial vehicles. ......See More
Cell, Leading edge select 'Journey to the center of the brain'
Optogenetics is a powerful tool for understanding how neural circuits function to control behavior, enabling researchers to alter the function of light-sensitive receptors or ion channels through pulses of light. ......See More
SPIE, Newsroom 'Antireflective nanostructures for high-efficiency optical devices'
Ordered and disordered nanostructures with broadband antireflection properties can be used in solar cells, LEDs, and transparent glasses. ......See More
NPG Asia Materials, Research Highlights 'Nanotechnology: A clearer view'
A new approach for fabricating nanostructured polymer surfaces can produce films with excellent antireflection properties. ......See More