首页> 外国专利> Circularly polarizing reflective material having super broad-band reflection and transmission characteristics and method of fabricating and using same in diverse applications

Circularly polarizing reflective material having super broad-band reflection and transmission characteristics and method of fabricating and using same in diverse applications

机译:具有超宽带反射和透射特性的圆偏振反射材料及其制造和在各种应用中的使用方法

摘要

Disclosed are super broadband circularly polarizing film materials and novels methods of fabricating and using the same. The circularly polarizing materials are made from polymerizable CLC film material having a cholesteric order, in which a liquid crystal material, such as a nematic liquid crystal material, is distributed in a non-linear fashion across the thickness of the film in a plurality of liquid crystal-rich and liquid crystal-depleted sites in the CLC polymer. The pitch of the helices of the CLC molecules in the polyermized CLC material varies in a non-linear (e.g. exponential) manner along the depth dimension (i.e. transverse to the surface) thereof. The resulting circularly polarizing materials have reflection and transmission characteristics over bands of operation approaching 2000 nm. Depending on the final spiral structure of the polymeriable CLC materials utilized, the CLC circularly polarizing materials reflect either left-handed or right-handed circularly polarized light. The CLC circularly polarizing materials of the present invention can be used in a variety of applications.
机译:公开了超宽带圆偏振膜材料及其新颖的制造和使用方法。圆偏振材料由具有胆甾醇型的可聚合的CLC膜材料制成,其中向列型液晶材料等液晶材料以非线性方式分布在膜的厚度上的多种液体中。 CLC聚合物中富含晶体和液晶耗尽的位点。聚合的CLC材料中CLC分子的螺旋的螺距沿其深度尺寸(即,垂直于表面)以非线性(例如指数)方式变化。所得的圆偏振材料在接近2000 nm的工作频带上具有反射和透射特性。取决于所使用的可聚合CLC材料的最终螺旋结构,CLC圆偏振材料会反射左旋或右旋圆偏振光。本发明的CLC圆偏振材料可用于多种应用中。

著录项

  • 公开/公告号US6532049B1

    专利类型

  • 公开/公告日2003-03-11

    原文格式PDF

  • 申请/专利权人 REVEO INC.;

    申请/专利号US20000665857

  • 发明设计人 SADEG M. FARIS;LE LI;YINGQIU JIANG;

    申请日2000-09-20

  • 分类号G02F11/335;G02F11/30;C09K193/00;G02C71/20;

  • 国家 US

  • 入库时间 2022-08-22 00:07:01

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