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    • 1. 发明授权
    • Ultra-thin liquid control plate and combination of box-like member and the control plate
    • 超薄液控板和箱状部件与控制板组合
    • US07554099B2
    • 2009-06-30
    • US11483765
    • 2006-07-11
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G01F23/00G21K5/08G21K5/10G01N23/00G21K7/00
    • H01J37/20H01J2237/2003H01J2237/2608
    • An ultra-thin liquid control plate and a combination of a box-like member and the control plate include a plate-like member having at least one view hole. The joint surface combined with a sidewall of the view hole and a surface of the plate-like member is provided with at least one more-hydrophilic section and at least one less-hydrophilic section, wherein the more-hydrophilic section has a height smaller than 50 μm. While combined with the box-like member, the plate-like member is mounted in the box-like member. The box-like member has at least one through hole running through each of a top side and a bottom side thereof and coaxially aligned with the view hole. After a liquid is placed into the view hole, the more-hydrophilic section adsorbs the liquid to form a liquid layer and the less-hydrophilic section is hydrophobic to adsorb no liquid.
    • 超薄液体控制板和盒状部件与控制板的组合包括具有至少一个视野孔的板状部件。 与观察孔的侧壁和板状构件的表面结合的接合表面设置有至少一个更亲水部分和至少一个较少亲水部分,其中较亲水部分的高度小于 妈妈妈妈 当与盒状构件组合时,板状构件安装在盒状构件中。 盒状构件具有穿过其顶侧和底侧中的每一个的至少一个通孔,并与观察孔同轴对准。 在将液体放入观察孔中之后,较亲水部分吸附液体以形成液体层,较不亲水的部分是疏水性的,以吸附液体。
    • 3. 发明申请
    • Ultra-thin liquid control plate and combination of box-like member and the control plate
    • 超薄液控板和箱状部件与控制板组合
    • US20070145268A1
    • 2007-06-28
    • US11483765
    • 2006-07-11
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G21K7/00
    • H01J37/20H01J2237/2003H01J2237/2608
    • An ultra-thin liquid control plate and a combination of a box-like member and the control plat include a plate-like member having at least one view hole. The joint surface combined with a sidewall of the view hole and a surface of the plate-like member is provided with at least one more-hydrophilic section and at least one less-hydrophilic section, wherein the more-hydrophilic section has a height smaller than 50 μm. While combined with the box-like member, the plate-like member is mounted in the box-like member. The box-like member has at least one through hole running through each of a top side and a bottom side thereof and coaxially aligned with the view hole. After a liquid is placed into the view hole, the more-hydrophilic section adsorbs the liquid to form a liquid layer and the less-hydrophilic section is hydrophobic to adsorb no liquid.
    • 超薄液体控制板和盒状部件与控制台的组合包括具有至少一个视野孔的板状部件。 与观察孔的侧壁和板状构件的表面结合的接合表面设置有至少一个更亲水部分和至少一个较少亲水部分,其中较亲水部分的高度小于 妈妈妈妈 当与盒状构件组合时,板状构件安装在盒状构件中。 盒状构件具有穿过其顶侧和底侧中的每一个的至少一个通孔,并与观察孔同轴对准。 在将液体放入观察孔中之后,较亲水部分吸附液体以形成液体层,较不亲水的部分是疏水性的,以吸附液体。
    • 4. 发明申请
    • Method of operating liquid in the vacuum or low-pressure environment and observing the operation and device for the operation and observation
    • 在真空或低压环境下操作液体的方法,观察操作和操作和观察装置
    • US20060261284A1
    • 2006-11-23
    • US11216044
    • 2005-09-01
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G21K5/10G01F23/00
    • H01J37/26H01J37/20H01J2237/2003
    • A method of operating liquid in a vacuum or low-pressure environment and observing the operation and a device for the operation and the observation respectively, including the steps of preparing a housing, putting the housing in the vacuum or low-pressure environment and control liquid, vapor, and buffer chambers under the same temperature, infusing vapor into the vapor chamber through a gas inlet and control the vapor pressure inside the vapor chamber to be equal to the saturated vapor pressure of a liquid specimen inside the liquid chamber under the same temperature to prevent the inside liquid from volatilization, and evacuating the buffer chamber through the pumping port to pump out the vapor and prevent the vapor from exhausting through outer apertures out of the housing. A probing source can pass through the outer, inner, and vapor apertures for observation and analysis of the liquid specimen inside the liquid chamber.
    • 一种在真空或低压环境中操作液体的方法,分别观察操作和操作和观察装置,包括准备壳体,将壳体放置在真空或低压环境中的步骤和控制液体 ,蒸汽和缓冲室,通过气体入口将蒸汽输入蒸气室,并将蒸汽室内的蒸汽压力控制在相同温度下等于液体室内液体试样的饱和蒸气压 以防止内部液体挥发,并且通过泵送端口排出缓冲室以泵出蒸汽并防止蒸气通过外部孔排出外壳。 探测源可以通过外部,内部和蒸气孔径,用于观察和分析液体室内的液体试样。
    • 5. 发明申请
    • Nanoimprint lithograph for fabricating nanoadhesive
    • 用于制造纳米粘合剂的纳米印刷版画
    • US20060249886A1
    • 2006-11-09
    • US11216045
    • 2005-09-01
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • B29C35/08B29C33/76B29C59/02
    • B29C43/021B29C35/0888B29C43/003B29C43/06B29C2035/0827B29C2043/025B29C2043/3438B29C2043/463B82Y10/00B82Y40/00G03F7/0002
    • A nanoimprint lithography method of fabricating a nanoadhesive includes steps of (a) preparing a substrate and a mold under the vacuum environment, wherein at least one of the substrate and the mold is transparent, the mold is located over the substrate and has an oppressing portion having nanometer-scale features and a mold release agent located on the surface of the nanometer-scale features; (b) coating a liquid resist cast on the substrate, wherein the resist cast can be hardened by ultraviolet rays; (c) having the mold is pressed on the substrate to enable the resist cast to fill between the nanometer-scale features and the substrate; (d) irradiating the resist cast by the ultraviolet rays for hardening; and (e) releasing the mold from the substrate to enable the resist cast to produce a contrast pattern thereon corresponding to the nanometer-scale features, wherein the resist cast with the contrast pattern is the nanoadhesive.
    • 制造纳米粘合剂的纳米压印光刻方法包括以下步骤:(a)在真空环境下制备基底和模具,其中基底和模具中的至少一个是透明的,模具位于基底上方并具有压迫部分 具有纳米尺度特征和位于纳米尺度特征表面的脱模剂; (b)在基材上涂覆流延抗蚀剂,其中抗蚀剂铸造可以通过紫外线硬化; (c)将模具压在衬底上以使抗蚀剂铸造能够填充在纳米尺度特征和衬底之间; (d)用紫外线照射抗蚀剂浇注硬化; 和(e)从所述基底释放所述模具以使所述抗蚀剂铸造能够在其上产生对应于所述纳米尺度特征的对比图案,其中所述对比度图案的抗蚀剂是纳米粘合剂。
    • 6. 发明授权
    • Device for operating gas in vacuum or low-pressure environment and for observation of the operation
    • 用于在真空或低压环境中操作气体并用于观察操作的装置
    • US07544954B2
    • 2009-06-09
    • US11429153
    • 2006-05-08
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G01F23/00
    • H01J37/20H01J37/26H01J2237/2003
    • A device for operating gas in the vacuum or low-pressure environment and for observation of the operation includes a housing. The housing has a thinner part formed at a side thereof, and at least one spacer mounted therein for partitioning off its inside into a gas chamber and at least one buffer chamber outside the gas chamber. The gas chamber has two inner apertures provided on the spacers above and below the gas chamber. The housing has two outer apertures provided respectively on a top side thereof and a bottom side thereof. All of the inner and outer apertures are coaxial with one another and located on the thinner part. The housing has a pumping port for communication with the buffer chamber, and a gas inlet for communication with the gas chamber.
    • 用于在真空或低压环境中操作气体并用于观察操作的装置包括壳体。 壳体的一侧形成有较薄的部分,并且至少一个间隔件安装在其中以将其内部分隔成气体室和在气体室外的至少一个缓冲室。 气室具有设置在气室上方和下方的间隔壁上的两个内孔。 壳体具有分别设置在其顶侧和底侧上的两个外孔。 所有内孔和外孔彼此同轴并位于较薄部分上。 壳体具有用于与缓冲室连通的泵送口和用于与气室连通的气体入口。
    • 7. 发明授权
    • Method of operating liquid in the vacuum or low-pressure environment and observing the operation and device for the operation and observation
    • 在真空或低压环境下操作液体的方法,观察操作和操作和观察装置
    • US07432511B2
    • 2008-10-07
    • US11216044
    • 2005-09-01
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G01F23/00G21K5/08G21K5/10
    • H01J37/26H01J37/20H01J2237/2003
    • A method of operating liquid in a vacuum or low-pressure environment and observing the operation and a device for the operation and the observation respectively, including the steps of preparing a housing, putting the housing in the vacuum or low-pressure environment and control liquid, vapor, and buffer chambers under the same temperature, infusing vapor into the vapor chamber through a gas inlet and control the vapor pressure inside the vapor chamber to be equal to the saturated vapor pressure of a liquid specimen inside the liquid chamber under the same temperature to prevent the inside liquid from volatilization, and evacuating the buffer chamber through the pumping port to pump out the vapor and prevent the vapor from exhausting through outer apertures out of the housing. A probing source can pass through the outer, inner, and vapor apertures for observation and analysis of the liquid specimen inside the liquid chamber.
    • 一种在真空或低压环境中操作液体的方法,分别观察操作和操作和观察装置,包括准备壳体,将壳体放置在真空或低压环境中的步骤和控制液体 ,蒸汽和缓冲室,通过气体入口将蒸汽输入蒸气室,并将蒸汽室内的蒸汽压力控制在相同温度下等于液体室内液体试样的饱和蒸气压 以防止内部液体挥发,并且通过泵送端口排出缓冲室以泵出蒸汽并防止蒸气通过外部孔排出外壳。 探测源可以通过外部,内部和蒸气孔径,用于观察和分析液体室内的液体试样。
    • 8. 发明申请
    • Observational liquid/gas environment combined with specimen chamber of electron microscope
    • 观察液/气环境与电子显微镜样品室结合
    • US20080073532A1
    • 2008-03-27
    • US11637769
    • 2006-12-13
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • Chih-Yu ChaoWen-Jiunn Hsieh
    • G21K7/00
    • H01J37/26H01J37/18H01J2237/006H01J2237/1405H01J2237/188H01J2237/2608
    • An observational liquid/gas environment combined with a specimen chamber and two pole pieces of an electron microscope includes at least two buffer chambers, a plurality of spacers, and a gas source. The buffer chambers are formed by the spacers and the two pole pieces, located at an upper side and a lower side of the specimen chamber respectively. The spacers have inner and outer apertures abutting the buffer chambers. All of the inner and outer apertures are coaxially aligned with one another, crossing a path that the electron beam of the electron microscope passes. The buffer chambers are connected with a gas-pumping source. The gas source is connected with the specimen chamber. The distance between the at least two inner apertures is smaller than that of the two pole pieces. The spacers having the inner apertures are located in the specimen chamber or the electron beam through tunnels.
    • 与样品室结合的观察性液体/气体环境和电子显微镜的两个极片包括至少两个缓冲室,多个间隔物和气体源。 缓冲室由分隔件和两个极片分别形成,分别位于试样室的上侧和下侧。 间隔物具有邻接缓冲室的内孔和外孔。 所有内孔和外孔彼此同轴对准,与电子显微镜的电子束通过的路径相交。 缓冲室与气体泵送源连接。 气源与样品室连接。 至少两个内孔之间的距离小于两个极片的距离。 具有内孔的间隔物位于试样室中或电子束通过隧道。