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July 1, 2021Science397 citations

Monolithic optical microlithography of high-density elastic circuits

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YZYu‐Qing ZhengYLYuxin LiuDZDonglai Zhong

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Abstract

Polymeric electronic materials have enabled soft and stretchable electronics. However, the lack of a universal micro/nanofabrication method for skin-like and elastic circuits results in low device density and limited parallel signal recording and processing ability relative to silicon-based devices. We present a monolithic optical microlithographic process that directly micropatterns a set of elastic electronic materials by sequential ultraviolet light-triggered solubility modulation. We fabricated transistors with channel lengths of 2 micrometers at a density of 42,000 transistors per square centimeter. We fabricated elastic circuits including an XOR gate and a half adder, both of which are essential components for an arithmetic logic unit. Our process offers a route to realize wafer-level fabrication of complex, high-density, and multilayered elastic circuits with performance rivaling that of their rigid counterparts.

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Cite This Study

Zheng et al. (2021) studied this question.

synapsesocial.com/papers/69d73b943f2a6ac123b8ab6ehttps://doi.org/10.1126/science.abh3551
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