CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors

Transient electronics entails the capability of electronic components to dissolve or reabsorb in a controlled manner when used in biomedical implants. Here, the authors perform a systematic study of the processes of hydrolysis, bioabsorption, cytotoxicity and immunological biocompatibility of monola...

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Autores principales: Xiang Chen, Yong Ju Park, Minpyo Kang, Seung-Kyun Kang, Jahyun Koo, Sachin M. Shinde, Jiho Shin, Seunghyun Jeon, Gayoung Park, Ying Yan, Matthew R. MacEwan, Wilson Z. Ray, Kyung-Mi Lee, John A Rogers, Jong-Hyun Ahn
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/1e5e764bc97b4e1ab90402c4b0c9ad69
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spelling oai:doaj.org-article:1e5e764bc97b4e1ab90402c4b0c9ad692021-12-02T14:39:07ZCVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors10.1038/s41467-018-03956-92041-1723https://doaj.org/article/1e5e764bc97b4e1ab90402c4b0c9ad692018-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03956-9https://doaj.org/toc/2041-1723Transient electronics entails the capability of electronic components to dissolve or reabsorb in a controlled manner when used in biomedical implants. Here, the authors perform a systematic study of the processes of hydrolysis, bioabsorption, cytotoxicity and immunological biocompatibility of monolayer MoS2.Xiang ChenYong Ju ParkMinpyo KangSeung-Kyun KangJahyun KooSachin M. ShindeJiho ShinSeunghyun JeonGayoung ParkYing YanMatthew R. MacEwanWilson Z. RayKyung-Mi LeeJohn A RogersJong-Hyun AhnNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiang Chen
Yong Ju Park
Minpyo Kang
Seung-Kyun Kang
Jahyun Koo
Sachin M. Shinde
Jiho Shin
Seunghyun Jeon
Gayoung Park
Ying Yan
Matthew R. MacEwan
Wilson Z. Ray
Kyung-Mi Lee
John A Rogers
Jong-Hyun Ahn
CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
description Transient electronics entails the capability of electronic components to dissolve or reabsorb in a controlled manner when used in biomedical implants. Here, the authors perform a systematic study of the processes of hydrolysis, bioabsorption, cytotoxicity and immunological biocompatibility of monolayer MoS2.
format article
author Xiang Chen
Yong Ju Park
Minpyo Kang
Seung-Kyun Kang
Jahyun Koo
Sachin M. Shinde
Jiho Shin
Seunghyun Jeon
Gayoung Park
Ying Yan
Matthew R. MacEwan
Wilson Z. Ray
Kyung-Mi Lee
John A Rogers
Jong-Hyun Ahn
author_facet Xiang Chen
Yong Ju Park
Minpyo Kang
Seung-Kyun Kang
Jahyun Koo
Sachin M. Shinde
Jiho Shin
Seunghyun Jeon
Gayoung Park
Ying Yan
Matthew R. MacEwan
Wilson Z. Ray
Kyung-Mi Lee
John A Rogers
Jong-Hyun Ahn
author_sort Xiang Chen
title CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
title_short CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
title_full CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
title_fullStr CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
title_full_unstemmed CVD-grown monolayer MoS2 in bioabsorbable electronics and biosensors
title_sort cvd-grown monolayer mos2 in bioabsorbable electronics and biosensors
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/1e5e764bc97b4e1ab90402c4b0c9ad69
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