Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell
碩士 === 國立彰化師範大學 === 光電科技研究所 === 99 === This thesis investigates the dynamic responses of the silica nanoparticle-doped pi cells. The obtained results indicate that under the non-memory state, the surface anchoring energy of the substrate, the operation voltage of the pi cell and the transition time...
Main Author: | |
---|---|
Other Authors: | |
Format: | Others |
Language: | zh-TW |
Published: |
2011
|
Online Access: | http://ndltd.ncl.edu.tw/handle/74507635182176329878 |
id |
ndltd-TW-099NCUE5614004 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-TW-099NCUE56140042016-04-11T04:22:19Z http://ndltd.ncl.edu.tw/handle/74507635182176329878 Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell 摻雜二氧化矽奈米粒子之光學彎曲補償模式液晶盒之光電特性探討 張哲維 碩士 國立彰化師範大學 光電科技研究所 99 This thesis investigates the dynamic responses of the silica nanoparticle-doped pi cells. The obtained results indicate that under the non-memory state, the surface anchoring energy of the substrate, the operation voltage of the pi cell and the transition time of the pi cell from the splay state to the asymmetrical splay state decrease with increasing silica nanoparticle concentrations. When a high voltage pulse is exerted to the silica nanoparticle doped pi cell, the doped silica nanoparticle accumulate on the substrate surface and thus creates Twisted-Pi state, overcoming the difficult transformation problem of the conventional pi cell. 黃啟炎 2011 學位論文 ; thesis 57 zh-TW |
collection |
NDLTD |
language |
zh-TW |
format |
Others
|
sources |
NDLTD |
description |
碩士 === 國立彰化師範大學 === 光電科技研究所 === 99 === This thesis investigates the dynamic responses of the silica nanoparticle-doped pi cells. The obtained results indicate that under the non-memory state, the surface anchoring energy of the substrate, the operation voltage of the pi cell and the transition time of the pi cell from the splay state to the asymmetrical splay state decrease with increasing silica nanoparticle concentrations. When a high voltage pulse is exerted to the silica nanoparticle doped pi cell, the doped silica nanoparticle accumulate on the substrate surface and thus creates Twisted-Pi state, overcoming the difficult transformation problem of the conventional pi cell.
|
author2 |
黃啟炎 |
author_facet |
黃啟炎 張哲維 |
author |
張哲維 |
spellingShingle |
張哲維 Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
author_sort |
張哲維 |
title |
Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
title_short |
Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
title_full |
Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
title_fullStr |
Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
title_full_unstemmed |
Study of Silica-Nanoparticle-Doped Optical Compensation Bend Mode Liquid Crystal Cell |
title_sort |
study of silica-nanoparticle-doped optical compensation bend mode liquid crystal cell |
publishDate |
2011 |
url |
http://ndltd.ncl.edu.tw/handle/74507635182176329878 |
work_keys_str_mv |
AT zhāngzhéwéi studyofsilicananoparticledopedopticalcompensationbendmodeliquidcrystalcell AT zhāngzhéwéi cànzáèryǎnghuàxìnàimǐlìzizhīguāngxuéwānqūbǔchángmóshìyèjīnghézhīguāngdiàntèxìngtàntǎo |
_version_ |
1718220479338119168 |