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    • 2. 发明申请
    • Toner processes and compositions thereof
    • 调色剂方法及其组合物
    • US20060078817A1
    • 2006-04-13
    • US10962942
    • 2004-10-12
    • Bing HsiehRichard Thompson
    • Bing HsiehRichard Thompson
    • G03G9/08
    • G03G9/0821G03G9/0804G03G9/081G03G9/0812G03G9/0819G03G9/08782G03G9/0926
    • The invention relates to a process for the preparation of a dry toner powder from an aqueous pigment concentrate dispersion by blending at least an aqueous-based pigment concentrate dispersion and a resin compound to produce a paste; charging the paste to an extruder to generate a hot melt extrusion; dispersing the hot melt extrusion in a mixture of a surfactant and a high boiling organic medium in which the resin compound is substantially insoluble; mixing at elevated temperature and under shear force to form uniform particles of from about 2 microns to about 15 microns particle size; isolating and washing the particles in a low boiling hydrocarbon solvent; and drying and collecting the particles for use as a dry toner powder, and to the dry toner product produced by this process.
    • 本发明涉及一种通过将至少一种水基颜料浓缩物分散体和一种树脂化合物共混以产生糊状物从水性颜料浓缩物分散体制备干燥调色剂粉末的方法; 将糊料装入挤出机以产生热熔体挤出; 将热熔体挤出分散在表面活性剂和其中树脂化合物基本不溶的高沸点有机介质的混合物中; 在高温和剪切力下混合以形成约2微米至约15微米粒度的均匀颗粒; 在低沸点烃溶剂中分离和洗涤颗粒; 并干燥并收集用作干燥调色剂粉末的颗粒,以及通过该方法制备的干燥调色剂产品。
    • 10. 发明授权
    • Polymer electrolyte materials based on block copolymers
    • 基于嵌段共聚物的聚合物电解质材料
    • US08691928B2
    • 2014-04-08
    • US13060944
    • 2009-08-22
    • Bing HsiehHany Basam EitouniMohit Singh
    • Bing HsiehHany Basam EitouniMohit Singh
    • C08G77/12
    • H01M10/0565C08G77/46H01M10/0525H01M2300/0082
    • The present invention relates generally to electrolyte materials. According to an embodiment, the present invention provides for a solid polymer electrolyte material that has high ionic conductivity and is mechanically robust. An exemplary material can be characterized by a copolymer that includes at least one structural block, such as a vinyl polymer, and at least one ionically conductive block with a siloxane backbone. In various embodiments, the electrolyte can be a diblock copolymer or a triblock copolymer. Many uses are contemplated for the solid polymer electrolyte materials. For example, the novel electrolyte material can be used in Li-based batteries to enable higher energy density, better thermal and environmental stability, lower rates of self-discharge, enhanced safety, lower manufacturing costs, and novel form factors.
    • 本发明一般涉及电解质材料。 根据一个实施方案,本发明提供了一种固体聚合物电解质材料,其具有高离子导电性和机械稳定性。 示例性材料的特征在于包含至少一个结构嵌段的共聚物,例如乙烯基聚合物,和至少一个具有硅氧烷主链的离子导电嵌段。 在各种实施方案中,电解质可以是二嵌段共聚物或三嵌段共聚物。 考虑到固体聚合物电解质材料的许多用途。 例如,新型电解质材料可用于锂基电池,以实现更高的能量密度,更好的热和环境稳定性,更低的自放电速率,更高的安全性,更低的制造成本和新颖的外形。