Biocompatible and Biodegradable Materials for Organic Field Effect Transistors
Yazarlar (14)
Mihai Irimia-Vladu
Johannes Kepler University Linz, Avusturya
Pavel A Troshin
Institute Of Problems Of Chemical Physics Of Russian Academy Of Sciences, Rusya Federasyonu
Melanie Reisinger
Johannes Kepler University Linz, Avusturya
Lyuba Shmygleva
Institute Of Problems Of Chemical Physics Of Russian Academy Of Sciences, Rusya Federasyonu
Prof. Dr. Yasin KANBUR Karabük Üniversitesi, Türkiye
Günther Schwabegger
Johannes Kepler University Linz, Avusturya
Marius Bodea
Johannes Kepler University Linz, Avusturya
Reinhard Schwödiauer
Johannes Kepler University Linz, Avusturya
Alexander Mumyatov
Institute Of Problems Of Chemical Physics Of Russian Academy Of Sciences, Rusya Federasyonu
Jeffrey W Fergus
Samuel Ginn College Of Engineering, Amerika Birleşik Devletleri
Vladimir F Razumov
Institute Of Problems Of Chemical Physics Of Russian Academy Of Sciences, Rusya Federasyonu
Helmut Sitter
Johannes Kepler University Linz, Avusturya
Niyazi Serdar Sariciftci
Johannes Kepler University Linz, Avusturya
Siegfried Bauer
Johannes Kepler University Linz, Avusturya
Makale Türü Özgün Makale (SSCI, AHCI, SCI, SCI-Exp dergilerinde yayınlanan tam makale)
Dergi Adı Advanced Functional Materials (Q1)
Dergi ISSN 1616-301X Dergi Bilgileri (2010)
Dergi Tarandığı Indeksler SCI-Expanded
Makale Dili İngilizce Basım Tarihi 12-2010
Cilt / Sayı / Sayfa 20 / 23 / 4069–4076 DOI 10.1002/adfm.201001031
Makale Linki http://doi.wiley.com/10.1002/adfm.201001031
UAK Araştırma Alanları
Fiziksel Kimya
Özet
Biocompatible‐ingestible electronic circuits and capsules for medical diagnosis and monitoring are currently based on traditional silicon technology. Organic electronics has huge potential for developing biodegradable, biocompatible, bioresorbable, or even metabolizable products. An ideal pathway for such electronic devices involves fabrication with materials from nature, or materials found in common commodity products. Transistors with an operational voltage as low as 4–5 V, a source drain current of up to 0.5 μA and an on‐off ratio of 3–5 orders of magnitude have been fabricated with such materials. This work comprises steps towards environmentally safe devices in low‐cost, large volume, disposable or throwaway electronic applications, such as in food packaging, plastic bags, and disposable dishware. In addition, there is significant potential to use such electronic items in biomedical implants.
Anahtar Kelimeler
biocompatible electronics | biodegradable electronics | edible electronics | natural materials | organic field-effect transistors
BM Sürdürülebilir Kalkınma Amaçları
Atıf Sayıları
Web of Science 405
Scopus 434
Google Scholar 522
Biocompatible and Biodegradable Materials for Organic Field Effect Transistors

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