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11.
公开(公告)号:US08089677B2
公开(公告)日:2012-01-03
申请号:US12135180
申请日:2008-06-08
申请人: Yeonjoon Park , Sang H. Choi , Glen C. King , Sang-Hyon Chu
发明人: Yeonjoon Park , Sang H. Choi , Glen C. King , Sang-Hyon Chu
IPC分类号: G02F1/01
CPC分类号: G02B5/1828 , G02F1/292 , G02F2201/305
摘要: A dynamic optical grating device and associated method for modulating light is provided that is capable of controlling the spectral properties and propagation of light without moving mechanical components by the use of a dynamic electric and/or magnetic field. By changing the electric field and/or magnetic field, the index of refraction, the extinction coefficient, the transmittivity, and the reflectivity of the optical grating device may be controlled in order to control the spectral properties of the light reflected or transmitted by the device.
摘要翻译: 提供了一种用于调制光的动态光栅装置和相关联的方法,其能够通过使用动态电场和/或磁场来控制光的光谱特性和光的传播而不移动机械部件。 通过改变电场和/或磁场,可以控制光栅装置的折射率,消光系数,透射率和反射率,以便控制由装置反射或透射的光的光谱特性 。
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12.
公开(公告)号:US20090303598A1
公开(公告)日:2009-12-10
申请号:US12135180
申请日:2008-06-08
申请人: Yeonjoon Park , Sang H. Choi , Glen C. King , Sang-Hyon Chu
发明人: Yeonjoon Park , Sang H. Choi , Glen C. King , Sang-Hyon Chu
IPC分类号: G02B5/18
CPC分类号: G02B5/1828 , G02F1/292 , G02F2201/305
摘要: A dynamic optical grating device and associated method for modulating light is provided that is capable of controlling the spectral properties and propagation of light without moving mechanical components by the use of a dynamic electric and/or magnetic field. By changing the electric field and/or magnetic field, the index of refraction, the extinction coefficient, the transmittivity, and the reflectivity of the optical grating device may be controlled in order to control the spectral properties of the light reflected or transmitted by the device.
摘要翻译: 提供了一种用于调制光的动态光栅装置和相关联的方法,其能够通过使用动态电场和/或磁场来控制光的光谱特性和光的传播而不移动机械部件。 通过改变电场和/或磁场,可以控制光栅装置的折射率,消光系数,透射率和反射率,以便控制由装置反射或透射的光的光谱特性 。
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公开(公告)号:US20070134552A1
公开(公告)日:2007-06-14
申请号:US11371575
申请日:2006-03-09
申请人: Sang-Hyon Chu , Sang Choi , Jae-Woo Kim , Peter Lillehei , Yeonjoon Park , Glen King , James Elliott
发明人: Sang-Hyon Chu , Sang Choi , Jae-Woo Kim , Peter Lillehei , Yeonjoon Park , Glen King , James Elliott
摘要: A thin-film electrode for a bio-nanobattery is produced by consecutively depositing arrays of a ferritin protein on a substrate, employing a spin self-assembly procedure. By this procedure, a first ferritin layer is first formed on the substrate, followed by building a second, oppositely-charged ferritin layer on the top of the first ferritin layer to form a bilayer structure. Oppositely-charged ferritin layers are subsequently deposited on top of each other until a desired number of bilayer structures is produced. An ordered, uniform, stable and robust, thin-film electrode material of enhanced packing density is presented, which provides optimal charge density for the bio-nanobattery.
摘要翻译: 生物纳米电池的薄膜电极是通过使用自旋自组装方法在基片上连续沉积铁蛋白蛋白的阵列产生的。 通过该过程,首先在衬底上形成第一铁蛋白层,随后在第一铁蛋白层的顶部上构建第二个相对充电的铁蛋白层以形成双层结构。 随后将相对充电的铁蛋白层沉积在彼此的顶部,直到产生所需数量的双层结构。 提出了一种有序,均匀,稳定和稳定的薄膜电极材料,提高了填充密度,为生物纳米电池提供了最佳的电荷密度。
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