Two-dimensional materials in functional three-dimensional architectures with applications in photodetection and imaging

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作者
Wonho Lee
Yuan Liu
Yongjun Lee
Bhupendra K. Sharma
Sachin M. Shinde
Seong Dae Kim
Kewang Nan
Zheng Yan
Mengdi Han
Yonggang Huang
Yihui Zhang
Jong-Hyun Ahn
John A. Rogers
机构
[1] Yonsei University,School of Electrical and Electronic Engineering
[2] Tsinghua University,Department of Engineering Mechanics, Center for Mechanics and Materials and Center for Flexible Electronics Technology, AML
[3] Northwestern University,Departments of Materials Science and Engineering, Biomedical Engineering, Chemistry, Mechanical Engineering, Electrical Engineering and Computer Science, Center for Bio
[4] Northwestern University,Integrated Electronics, Simpson Querrey Institute for Nano/Biotechnology
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摘要
Efficient and highly functional three-dimensional systems that are ubiquitous in biology suggest that similar design architectures could be useful in electronic and optoelectronic technologies, extending their levels of functionality beyond those achievable with traditional, planar two-dimensional platforms. Complex three-dimensional structures inspired by origami, kirigami have promise as routes for two-dimensional to three-dimensional transformation, but current examples lack the necessary combination of functional materials, mechanics designs, system-level architectures, and integration capabilities for practical devices with unique operational features. Here, we show that two-dimensional semiconductor/semi-metal materials can play critical roles in this context, through demonstrations of complex, mechanically assembled three-dimensional systems for light-imaging capabilities that can encompass measurements of the direction, intensity and angular divergence properties of incident light. Specifically, the mechanics of graphene and MoS2, together with strategically configured supporting polymer films, can yield arrays of photodetectors in distinct, engineered three-dimensional geometries, including octagonal prisms, octagonal prismoids, and hemispherical domes.
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