Please use this identifier to cite or link to this item: https://ir.swu.ac.th/jspui/handle/123456789/29357
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dc.contributor.authorSuktep N.
dc.contributor.authorPongampai S.
dc.contributor.authorPakawanit P.
dc.contributor.authorNoisak J.
dc.contributor.authorBongkarn T.
dc.contributor.authorCharoonsuk T.
dc.contributor.authorVittayakorn N.
dc.contributor.otherSrinakharinwirot University
dc.date.accessioned2023-11-15T02:08:21Z-
dc.date.available2023-11-15T02:08:21Z-
dc.date.issued2023
dc.identifier.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85173545281&doi=10.1080%2f10584587.2023.2234558&partnerID=40&md5=8e926e7adf45f77688019c2afacd2b8b
dc.identifier.urihttps://ir.swu.ac.th/jspui/handle/123456789/29357-
dc.description.abstractTriboelectric nanogenerators (TENG) with great performance and biodegradability are desired for the expansion of novel medical devices and wearable electronics. The present study aims at the preparation of natural silk in the form of silk fibroin (SF) film for utilization in TENG and further improving its output efficiency by embedding organic-piezoelectric gamma-glycine (γ-gly) amino acid to be a hybrid-organic piezoelectric/triboelectric nanogenerator (HO-P/TENG). The attenuated total reflectance infrared spectroscopy (ATR-IR) results demonstrated the N-H, C = O, and C-N bonding for SF and SF/γ-gly, confirming its dominant effect with a strong electron-donating tendency from those amino groups. The scanning electron microscope (SEM) and synchrotron radiation X-ray tomographic microscopy (SR-XTM) images show good dispersibility of incorporated γ-gly on the surface and also inside the SF matrix relating to its content to improve the electrical performance homogeneously. By fabricating the device in the vertical contact-separation mode, the present SF/γ-gly HO-P/TENG at 15 wt% provides the maximum output voltage (VOC) and current (ISC) of 81 V and 121 μA with a maximum output power (Pmax) of 205 μW at the external load resistance of 5 MΩ. This SF-based HO-P/TENG has the advantage of being cost-effective with simple fabrication, demonstrating great promise for practical uses. © 2023 Taylor & Francis Group, LLC.
dc.publisherTaylor and Francis Ltd.
dc.subjectamino acid
dc.subjecthybrid organic piezoelectric-triboelectric nanogenerator
dc.subjectSilk fibroin
dc.titleSilk Fibroin/Amino Acid Hybrid Organic Piezoelectric-Triboelectric Nanogenerator
dc.typeArticle
dc.rights.holderScopus
dc.identifier.bibliograpycitationIntegrated Ferroelectrics. Vol 238, No.1 (2023), p.101-114
dc.identifier.doi10.1080/10584587.2023.2234558
Appears in Collections:Scopus 2023

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