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    • 81. 发明授权
    • Morphology trapping and materials suitable for use therewith
    • 形态捕获和适合使用的材料
    • US06746632B2
    • 2004-06-08
    • US10190208
    • 2002-07-05
    • Michael R. HoustonToshiaki HinoDavid S. Soane
    • Michael R. HoustonToshiaki HinoDavid S. Soane
    • B29D1100
    • C08F287/00C08F265/04C08F291/00C08J3/28Y10S525/903Y10T428/31504Y10T428/31507Y10T428/31786Y10T428/31826Y10T428/31855
    • This invention is directed to a process for the rapid in-situ curing of polymerizable materials to provide macromolecular networks and articles of manufacture that are “morphology-trapped”; that is, they exhibit a fixed phase morphology and/or molecular orientation that is locked in by the curing step. The process includes the steps of mixing together a dead polymer, a reactive plasticizer and an initiator to give a polymerizable composition; further processing the mixture in order to achieve a desired phase morphology and/or molecular orientation of the polymeric constituents; shaping the polymerizable composition into a desired geometry; and exposing the polymerizable composition to a source of polymerizing energy, without mixing, to give a final product with the desired phase morphology and/or molecular orientation locked in place. The phase morphology and molecular orientation present just prior to cure of the polymerizable composition is subsequently trapped or locked in place by the curing step so that further changes in morphology are hindered or prevented.
    • 本发明涉及一种快速原位固化可聚合材料以提供“形态学被捕”的大分子网络和制品的方法。 也就是说,它们表现出通过固化步骤锁定的固定相形态和/或分子取向。 该方法包括将死聚合物,活性增塑剂和引发剂混合在一起以产生可聚合组合物的步骤; 进一步处理混合物以实现聚合物组分的期望相形态和/或分子取向; 将可聚合组合物成型为所需的几何形状; 并将可聚合组合物暴露于聚合能源,而不混合,得到具有所需相形态和/或分子取向锁定在适当位置的最终产物。 在固化可聚合组合物之前存在的相态和分子取向随后通过固化步骤被捕获或锁定在适当位置,从而妨碍或防止形态的进一步变化。
    • 83. 发明授权
    • Polycarbonate electrophoretic devices
    • 聚碳酸酯电泳装置
    • US06413400B1
    • 2002-07-02
    • US09479503
    • 2000-01-07
    • David S. SoaneZoya M. Soane
    • David S. SoaneZoya M. Soane
    • G01N2726
    • B01D57/02B01F13/0059B01F13/0076B01J19/0093B01J2219/00853B01J2219/00912B82Y10/00B82Y40/00C07K1/26G01N27/44752G01N27/44773G03F7/0002
    • Devices and methods are disclosed for moving charged molecules through a medium by the application of a plurality of electrical fields of sufficient strength and applied for sufficient amounts of time so as to move the charged molecules through the medium. The devices although preferably small in size, preferably generate large numbers (100 or more) of electrical fields to a movement area which preferably contains a liquid buffered or gel medium. Mixtures of charged molecules are pulled through the gel by the force of the electrical fields. The fields are preferably activated simultaneously or sequentially one after another at various speeds to create complex force field distributions or moving field waves along the separation medium. Charged molecules capable of moving quickly through the gel will be moved along by the faster moving field waves and be separated from slower moving molecules. The fields can be activated by computer software and can be used to move molecules away from and toward each other to obtain rapid and complex chemical synthesis, sequencing or reaction protocols.
    • 公开的装置和方法用于通过施加足够强度的多个电场来移动带电分子通过介质,并施加足够的时间,以使带电分子移动通过介质。 尽管尺寸优选小的装置优选地对于优选含有液体缓冲或凝胶介质的运动区域产生大量(100个或更多个)电场。 带电分子的混合物被电场的力拉入凝胶。 这些场优选地以各种速度一个接一个地同时或顺序地被激活,以产生沿着分离介质的复数的力场分布或移动的场波。 能够快速移动通过凝胶的带电分子将沿着更快的移动场波移动并与较慢的移动分子分离。 这些领域可以通过计算机软件激活,并且可以用于将分子移开和相互移动,以获得快速和复杂的化学合成,测序或反应方案。
    • 84. 发明授权
    • Hollow polymeric fibers
    • 中空聚合纤维
    • US06387492B2
    • 2002-05-14
    • US09840317
    • 2001-04-23
    • David S. SoaneMichael R. Houston
    • David S. SoaneMichael R. Houston
    • D01F600
    • D01D5/247C08J9/04C08J2201/03D01F1/08Y10T428/249921Y10T428/249962Y10T428/249971Y10T428/249972Y10T428/2913Y10T428/2927Y10T428/2935Y10T428/2975
    • The present invention is directed to thermo-expandable fibers and to the expanded hollow fibers or microtubes, microcellular foam or foamed composite material that results upon heating the expandable fibers. The thermo-expandable fiber of the present invention is characterized by having a polymeric wall surrounding one or more pockets or particles of blowing agent or propellant within the fiber. The polymeric wall may have reactive functional groups on its surface to give a fusible fiber. When the expandable fibers are heated, they expand to form hollow fibers or microtubes comprising polymeric shells surrounding one or more internal gaseous voids, and when the fibers are expanded while in contact with each other, a microcellular foam may be formed. The foam consists of a plurality of hollow fibers fused together, optionally aided by functional groups present on the surface of the heated fibers that act to crosslink the material. When expandable microspheres are mixed with a matrix, which can optionally react with functional groups on the fiber surface, and the resulting combination is heated, the fibers expand to give a foamed composite material in which the hollow fibers or microtubes may optionally be fused or chemically crosslinked to the matrix.
    • 本发明涉及热膨胀纤维和膨胀的中空纤维或微管,微孔泡沫或泡沫复合材料,其导致加热可膨胀纤维。 本发明的热膨胀性纤维的特征在于,在纤维内具有包围发泡剂或推进剂的一个或多个口袋或颗粒的聚合物壁。 聚合物壁在其表面上可以具有反应性官能团以得到可熔纤维。 当可膨胀纤维被加热时,它们膨胀以形成包含围绕一个或多个内部气体空隙的聚合物壳的中空纤维或微管,并且当纤维在彼此接触时膨胀时,可以形成微孔泡沫。 泡沫由多个融合在一起的中空纤维组成,任选由加热纤维表面上存在的用于交联材料的官能团辅助。 当可膨胀微球与可以任选地与纤维表面上的官能团反应的基质混合,并且所得到的组合被加热时,纤维膨胀以产生泡沫复合材料,其中中空纤维或微管可以任选地熔融或化学 与基质交联。
    • 85. 发明授权
    • Method and device for performing chemical reactions
    • 用于进行化学反应的方法和装置
    • US06306272B1
    • 2001-10-23
    • US09172187
    • 1998-10-13
    • David S. SoaneZoya M. Soane
    • David S. SoaneZoya M. Soane
    • G01N2726
    • B01D57/02B01F13/0059B01F13/0076B01J19/0093B01J2219/00853B01J2219/00912B82Y10/00B82Y40/00C07K1/26G01N27/44752G01N27/44773G03F7/0002
    • Devices and methods are disclosed for moving charged molecules through a medium by the application of a plurality of electrical fields of sufficient strength and applied for sufficient amounts of time so as to move the charged molecules through the medium. The devices although preferably small in size, preferably generate large numbers (100 or more) of electrical fields to a movement area which preferably contains a liquid buffered or gel medium. Mixtures of charged molecules are pulled through the gel by the force of the electrical fields. The fields are preferably activated simultaneously or sequentially one after another at various speeds to create complex force field distributions or moving field waves along the separation medium. Charged molecules capable of moving quickly through the gel will be moved along by the faster moving field waves and be separated from slower moving molecules. The fields can be activated by computer software and can be used to move molecules away from and toward each other to obtain rapid and complex chemical synthesis, sequencing or reaction protocols.
    • 公开的装置和方法用于通过施加足够强度的多个电场来移动带电分子通过介质,并施加足够的时间,以使带电分子移动通过介质。 尽管尺寸优选小的装置优选地对于优选含有液体缓冲或凝胶介质的运动区域产生大量(100个或更多个)电场。 带电分子的混合物被电场的力拉入凝胶。 这些场优选地以各种速度一个接一个地同时或顺序地被激活,以产生沿着分离介质的复数的力场分布或移动的场波。 能够快速移动通过凝胶的带电分子将沿着更快的移动场波移动并与较慢的移动分子分离。 这些领域可以通过计算机软件激活,并且可以用于将分子移开和相互移动,以获得快速和复杂的化学合成,测序或反应方案。
    • 87. 发明授权
    • Method and device for moving molecules by the application of a plurality
of electrical fields
    • 通过施加多个电场来移动分子的方法和装置
    • US6093296A
    • 2000-07-25
    • US974372
    • 1997-11-19
    • David S. SoaneZoya M. Soane
    • David S. SoaneZoya M. Soane
    • B01D57/02B01F13/00B01J19/00C07K1/26G01N27/447G03F7/00G01N27/26
    • B01D57/02B01F13/0076B01J19/0093B82Y10/00B82Y40/00C07K1/26G01N27/44752G01N27/44773G03F7/0002B01F13/0059B01J2219/00853B01J2219/00912
    • Devices and methods are disclosed for moving charged molecules through a medium by the application of a plurality of electrical fields of sufficient strength and applied for sufficient amounts of time so as to move the charged molecules through the medium. The devices although preferably small in size, preferably generate large numbers (100 or more) of electrical fields to a movement area which preferably contains a liquid buffered or gel medium. Mixtures of charged molecules are pulled through the gel by the force of the electrical fields. The fields are preferably activated simultaneously or sequentially one after another at various speeds to create complex force field distributions or moving field waves along the separation medium. Charged molecules capable of moving quickly through the gel will be moved along by the faster moving field waves and be separated from slower moving molecules. The fields can be activated by computer software and can be used to move molecules away from and toward each other to obtain rapid and complex chemical synthesis, sequencing or reaction protocols.
    • 公开的装置和方法用于通过施加足够强度的多个电场来移动带电分子通过介质,并施加足够的时间,以使带电分子移动通过介质。 尽管尺寸优选小的装置优选地对于优选含有液体缓冲或凝胶介质的运动区域产生大量(100个或更多个)电场。 带电分子的混合物被电场的力拉入凝胶。 这些场优选地以各种速度一个接一个地同时或顺序地被激活,以产生沿着分离介质的复数的力场分布或移动的场波。 能够快速移动通过凝胶的带电分子将沿着更快的移动场波移动并与较慢的移动分子分离。 这些领域可以通过计算机软件激活,并且可以用于将分子移开和相互移动,以获得快速和复杂的化学合成,测序或反应方案。