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Atomically thin bioelectronics

delete2024-10-31
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PRE
AI
D
Dmitry Kireev *
S
Shanmukh Kutagulla
J
Juyeong Hong
M
Madison N. Wilson
M
Mehrdad Ramezani
D
Duygu Kuzum
J
Jong‐Hyun Ahn
D
Deji Akinwande
DOI:10.1038/s41578-024-00728-4delete
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Abstract

Abstract

En 中文
Tissue-like bioelectronics have emerged as practical, user-friendly and unobtrusive systems for seamless bidirectional integration with the human body. Two-dimensional materials, being led by the prototypical graphene, uniquely fit the task of creating ultrathin and functional interfaces with biological matter. In this Perspective, we comprehensively discuss 2D materials and their electrical, optical, environmental and mechanical properties relevant to bioelectronics. We present examples of 2D material-based bioelectronic devices for tissue interfacing (skintronics) and organ interfacing (organtronics). Importantly, we provide a roadmap for the future development of the field and highlight associated challenges yet to be solved. Tissue-like bioelectronics offer seamless integration with the human body, with 2D materials such as graphene being ideal for creating ultrathin interfaces with biological tissues. This Perspective covers the properties of 2D materials relevant to bioelectronics, showcases examples of their use in tissue and organ interfacing, and outlines future development directions and challenges in the field.
Keywords:
TRANSITION-METAL-DICHALCOGENIDE
2-DIMENSIONAL MATERIALS
ELECTRONIC-PROPERTIES
BRAIN ORGANOIDS
GRAPHENE
TRANSISTORS
MONOLAYER
TRANSPARENT
SENSOR
FILMS

Journal

Nature Reviews Materials cover
Nature Reviews Materials
IF:
86.2
Papers:
1.2K
Citations:
4.3W

Organization

U
university of massachusetts system
Scholars:
3.8W
Papers: 3.5W
Citations: 42
U
University of Massachusetts Amherst
Scholars:
1.1W
Papers: 8.9K
Citations: 19
U
university of texas austin
Scholars:
2.4W
Papers: 2.0W
Citations: 54
U
university of texas system
Scholars:
18.5W
Papers: 15.6W
Citations: 210
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Cited Papers

Cited Papers

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Ab Initio Prediction of Piezoelectricity in Two-Dimensional Materials
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IF11.6
err2018-07-01
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Low-temperature growth of MoS2 on polymer and thin glass substrates for flexible electronics
err2023-07-27
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The Road for 2D Semiconductors in the Silicon Age
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