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1.
J Nanosci Nanotechnol ; 13(11): 7535-9, 2013 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-24245287

RESUMO

While observing the transfer characteristics of a-IGZO TFTs, it was noticed that a hump occurred in the subthreshold regime after light and bias stress. This study analyzes the mechanism of the hump occurrence. It was determined that hump characteristics were related with parasitic TFTs which formed at the peripheral edges parallel with the channel direction. It seems that the negative shift of the transfer characteristics of parasitic TFTs was larger than that of the main TFT under light and bias stress. Therefore, the difference in the negative shift between the main TFT and the parasitic TFT was the origin of the hump occurrence. We investigated the instability of a-IGZO TFTs under negative gate bias with light illumination for various channel structures in order to verify the above mechanism.


Assuntos
Gálio/química , Índio/química , Membranas Artificiais , Nanopartículas Metálicas/química , Transistores Eletrônicos , Óxido de Zinco/química , Campos Eletromagnéticos , Desenho de Equipamento , Análise de Falha de Equipamento , Gálio/efeitos da radiação , Índio/efeitos da radiação , Luz , Iluminação/métodos , Teste de Materiais , Nanopartículas Metálicas/efeitos da radiação , Óxido de Zinco/efeitos da radiação
2.
ACS Appl Mater Interfaces ; 3(5): 1451-6, 2011 May.
Artigo em Inglês | MEDLINE | ID: mdl-21401212

RESUMO

A photoresponsive organic complementary inverter was fabricated and its light sensing characteristics was studied. An organic circuit was fabricated by integrating p-channel pentacene and n-channel copper hexadecafluorophthalocyanine (F16CuPc) organic thin-film transistors (OTFTs) with a polymeric gate dielectric. The F16CuPc OTFT showed typical n-type characteristics and a strong photoresponse under illumination. Whereas under illumination, the pentacene OTFT showed a relatively weak photoresponse with typical p-type characteristics. The characteristics of the organic electro-optical circuit could be controlled by the incident light intensity, a gate bias, or both. The logic threshold (V(M), when V(IN) = V(OUT)) was reduced from 28.6 V without illumination to 19.9 V at 6.94 mW/cm². By using solely optical or a combination of optical and electrical pulse signals, light sensing was demonstrated in this type of organic circuit, suggesting that the circuit can be potentially used in various optoelectronic applications, including optical sensors, photodetectors and electro-optical transceivers.

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