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    • 6. 发明授权
    • Hydrophilic nanoporous materials
    • 亲水纳米多孔材料
    • US08785111B2
    • 2014-07-22
    • US13133701
    • 2009-12-09
    • Li LiSokol NdoniRolf Henrik BergLars SchulteMartin E. Vigild
    • Li LiSokol NdoniRolf Henrik BergLars SchulteMartin E. Vigild
    • G03F7/26
    • C08J9/0071C08J9/26C08J9/36C08J2201/046C08J2300/00C08J2353/00
    • The present application discloses a method for preparing and rendering hydrophilic a nanoporous material of a polymer matrix which has a porosity of 0.1-90% (v/v), such that the ratio between the final water absorption (% (w/w)) and the porosity (% (v/v)) is at least 0.05, the method comprising the steps of: (a) preparing a precursor material comprising at least one polymeric component and having a first phase and a second phase; (b) removal of at least a part of the first phase of the precursor material prepared in step (a) so as to leave behind a nanoporous material of the polymer matrix; (c) irradiating at least a part of said nanoporous material with light of a wave length of in the range of 250-400 nm (or 200-700 nm) in the presence of oxygen and/or ozone. Corresponding hydrophilic nanoporous materials are also disclosed.
    • 本申请公开了一种制备和使亲水性的聚合物基质的纳米多孔材料的方法,其具有0.1-90%(v / v)的孔隙率,使得最终吸水率(%(w / w)) 并且孔隙率(%(v / v))至少为0.05,该方法包括以下步骤:(a)制备包含至少一种聚合物组分并具有第一相和第二相的前体材料; (b)除去在步骤(a)中制备的前体材料的至少一部分第一相,以留下聚合物基体的纳米多孔材料; (c)在存在氧和/或臭氧的情况下用波长为250-400nm(或200-700nm)的波长照射所述纳米多孔材料的至少一部分。 还公开了相应的亲水纳米多孔材料。
    • 7. 发明授权
    • Physically functional materials
    • 物理功能材料
    • US06376655B1
    • 2002-04-23
    • US08973179
    • 1997-12-02
    • Rolf Henrik BergSøren HvilstedP. S. Ramanujam
    • Rolf Henrik BergSøren HvilstedP. S. Ramanujam
    • C07C24508
    • B82Y10/00C07C245/08C07C255/65C07D257/02G02F1/3611G03H2240/26G03H2240/52G03H2240/53G03H2260/35G11B7/00454G11B7/0065G11B7/244G11B9/149G11C13/042H01F1/42Y10S534/03
    • The invention relates to novel monodisperse or polydisperse compounds, in general named DNO (diamino acid N&agr;-substituted oligopeptides), preferably low molecular weight polypeptides, e.g., based on ornithine, lysine, diaminobutyric acid, diaminopropionic acid, aminoethylglycine or other amino acids or peptides having azobenzenes or other physicially functional groups, e.g., photoresponsive groups, as side chains. These compounds may be synthesized using solid phase peptide synthesis techniques. Materials, e.g., thin films, comprising such compounds may be used for optical storage of information (holographic data storage), nonlinear optics (NLO), as photoconductors, photonic band-gap materials, electrically conducting materials, electroluminescent materials, piezo-electric materials, pyroelectric materials, magnetic materials, ferromagnetic materials, ferroelectric materials, photorefractive materials, or materials in which light-induced conformational changes can be produced. Optical anisotropy may reversibly be generated with polarized laser light whereby a hologram is formed. First order diffraction efficiencies of up to around 80% have been obtained.
    • 本发明涉及新的单分散或多分散化合物,通常称为DNO(二氨基酸Nalpha取代的寡肽),优选低分子量多肽,例如基于鸟氨酸,赖氨酸,二氨基丁酸,二氨基丙酸,氨基乙基甘氨酸或其它氨基酸或肽 具有偶氮苯或其它物理官能团,例如光响应基团,作为侧链。 这些化合物可以使用固相肽合成技术合成。 包括这种化合物的材料,例如薄膜可以用于光学存储信息(全息数据存储),非线性光学(NLO),作为光电导体,光子带隙材料,导电材料,电致发光材料,压电材料 ,热电材料,磁性材料,铁磁材料,铁电材料,光折射材料或可以产生光诱导构象变化的材料。 光学各向异性可以用偏振激光可逆地产生,由此形成全息图。 已获得高达约80%的一级衍射效率。
    • 10. 发明申请
    • HYDROPHILIC NANOPOROUS MATERIALS
    • 水解纳米材料
    • US20110305993A1
    • 2011-12-15
    • US13133701
    • 2009-12-09
    • Li LiSokol NdoniRolf Henrik BergLars SchulteMartin E. Vigild
    • Li LiSokol NdoniRolf Henrik BergLars SchulteMartin E. Vigild
    • G03F7/20B82B3/00
    • C08J9/0071C08J9/26C08J9/36C08J2201/046C08J2300/00C08J2353/00
    • The present application discloses a method for preparing and rendering hydrophilic a nanoporous material of a polymer matrix which has a porosity of 0.1-90% (v/v), such that the ratio between the fmal water absorption (% (w/w)) and the porosity (% (v/v)) is at least 0.05, the method comprising the steps of: (a) preparing a precursor material comprising at least one polymeric component and having a first phase and a second phase; (b) removal of at least a part of the first phase of the precursor material prepared in step (a) so as to leave behind a nanoporous material of the polymer matrix; (c) irradiating at least a part of said nanoporous material with light of a wave length of in the range of 250-400 nm (or 200-700 nm) in the presence of oxygen and/or ozone. Corresponding hydrophilic nanoporous materials are also disclosed.
    • 本申请公开了一种制备和使亲水性的聚合物基质的纳米多孔材料的孔隙率为0.1-90%(v / v)的亲水性方法,使得吸水率(%(w / w)) 并且孔隙率(%(v / v))至少为0.05,该方法包括以下步骤:(a)制备包含至少一种聚合物组分并具有第一相和第二相的前体材料; (b)除去在步骤(a)中制备的前体材料的至少一部分第一相,以留下聚合物基体的纳米多孔材料; (c)在存在氧和/或臭氧的情况下用波长为250-400nm(或200-700nm)的波长照射所述纳米多孔材料的至少一部分。 还公开了相应的亲水纳米多孔材料。