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液晶光電實驗室

外加高頻電壓下高分子分散液晶薄膜在電流體動力效 應的光電特性.

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液晶光電實驗室

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  1. 外加高頻電壓下高分子分散液晶薄膜在電流體動力效外加高頻電壓下高分子分散液晶薄膜在電流體動力效 應的光電特性 在一般的高分子分散液晶薄膜,其電壓–穿透率曲線是一個單調上升的曲線,本論文利用強度極低的 UV 光照射固化,並且控制成膜時的溫度,可以成功的製作出大尺吋(20μm~30μm)液晶顆粒球、且分布均勻的高分子分散液晶薄膜。當此薄膜外加高頻率(50kHz~700KHz)電壓時,其液晶顆粒球內的液晶分子隨著電壓增加(0V~10V)而逐漸平行電場方向排列,進而使得穿透度逐漸上升至約40%;而當電壓繼續增加(11V~20V)時,則由於電流體渦流的產生,使得液晶顆粒球產生散射而造成穿透度下降的情形;持續增加電壓(21V~30V),則由於顆粒球內的液晶分子受到電流體渦流及熱效應的影響,使得在 polymer wall 附近的液晶分子也開始受到電場影響而能轉動,造成液晶顆粒球與聚合物間的光學邊界逐漸消失,進而形成顆粒球邊界散射減少,而使穿透度增加,其最高穿透度可達到接近100%。最後利用此薄膜對於不同頻率下所產生不同的光電曲線,而能夠製作出以頻率控制光穿透開關的元件,其對比度可達250 左右。 液晶光電實驗室 圖、偏光顯微鏡下聚合物分散液晶薄膜 相分離圖 圖、W–PDLC 薄膜在外加頻率為 50KHz ~ 700KHz 交流電壓下的穿透率變化曲線 contrast≒250 圖、頻率開關元件開關動作曲線

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