Fabrication Research and Property of Enhanced Petaling Cold Cathode with Carbon Nanotube

With high effective screen-printing technique, a new triode field emission display (FED)with enhanced petaling cold cathode was fabricated. For enhancing the field emission performance,a series of improved measures was adopted in the fabrication course. Seen from the fabrication structure of enhance...

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Published in东华大学学报(英文版) Vol. 30; no. 2; pp. 141 - 144
Main Author 李玉魁 李晓荃 刘兴辉 卢文科
Format Journal Article
LanguageEnglish
Published School of Electronic Information,Zhongyuan Institute of Technology,Zhengzhou 450007,China%School of Physics,Liaoning University,Shenyang 110036,China%School of Information Science and Technology,Donghua University,Shanghai 201620,China 2013
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ISSN1672-5220

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Abstract With high effective screen-printing technique, a new triode field emission display (FED)with enhanced petaling cold cathode was fabricated. For enhancing the field emission performance,a series of improved measures was adopted in the fabrication course. Seen from the fabrication structure of enhanced petaling cold cathode,the bar conducting electrode and the petaling bottom electrode were fabricated with the sintered silver slurry on cathode glass faceplate. The luminescence image with green phosphor was displayed for the sealed enhanced petaling cold cathode FED. The measured results showed that the enhanced petaling cold cathode had good field emission performance. The enhanced petaling cold cathode FED possessed low turn-on electric-field of 1. 95 V /μm,large emission current of 1 389. 6 μA,and high luminance brightness of 1 520 cd /m2 .
AbstractList With high effective screen-printing technique, a new triode field emission display (FED)with enhanced petaling cold cathode was fabricated. For enhancing the field emission performance,a series of improved measures was adopted in the fabrication course. Seen from the fabrication structure of enhanced petaling cold cathode,the bar conducting electrode and the petaling bottom electrode were fabricated with the sintered silver slurry on cathode glass faceplate. The luminescence image with green phosphor was displayed for the sealed enhanced petaling cold cathode FED. The measured results showed that the enhanced petaling cold cathode had good field emission performance. The enhanced petaling cold cathode FED possessed low turn-on electric-field of 1. 95 V /μm,large emission current of 1 389. 6 μA,and high luminance brightness of 1 520 cd /m2 .
Author 李玉魁 李晓荃 刘兴辉 卢文科
AuthorAffiliation School of Electronic Information, Zhongyuan Institute of Technology, Zhengzhou 450007, China School of Physics, Liaoning University, Shenyang 110036, China School of Information Science and Technology, Donghua University, Shanghai 201620, China
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silver slurry
cold cathode
sintering
field emission
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Notes LI Yu-kui, LI Xiao-quan, LIU Xing-hui, LU Wen-ke(1 School of Electronic Information, Zhongyuan Institute of Technology, Zhengzhou 450007, China 2 School of Physics, Liaoning University, Shenyang 110036, China 3 School of Information Science and Technology, Donghua University, Shanghai 201620, China)
31-1920/N
cold cathode; sintering ; bottom electrode ; field emission;silver slurry
With high effective screen-printing technique, a new triode field emission display (FED)with enhanced petaling cold cathode was fabricated. For enhancing the field emission performance,a series of improved measures was adopted in the fabrication course. Seen from the fabrication structure of enhanced petaling cold cathode,the bar conducting electrode and the petaling bottom electrode were fabricated with the sintered silver slurry on cathode glass faceplate. The luminescence image with green phosphor was displayed for the sealed enhanced petaling cold cathode FED. The measured results showed that the enhanced petaling cold cathode had good field emission performance. The enhanced petaling cold cathode FED possessed low turn-on electric-field of 1. 95 V /μm,large emission current of 1 389. 6 μA,and high luminance brightness of 1 520 cd /m2 .
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特种结构材料
理论
纳米材料
Title Fabrication Research and Property of Enhanced Petaling Cold Cathode with Carbon Nanotube
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