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公开(公告)号:US20170009396A1
公开(公告)日:2017-01-12
申请号:US15121032
申请日:2014-12-10
发明人: Zijian Zheng , Yi Li , Haozhong Xin , Allan Chan , Hong Hu , Xuechang Zhou , Zhilu Liu
IPC分类号: D06M15/233 , D06M11/44 , D06M23/10 , D06M11/46 , D06M13/513 , C08F222/08 , D06M11/45
CPC分类号: D06M15/233 , C08F222/08 , C08F2220/1816 , D06M11/44 , D06M11/45 , D06M11/46 , D06M13/5135 , D06M15/263 , D06M23/08 , D06M23/10 , D06M2101/04 , D06M2200/00 , D06M2200/50 , D06M2400/01
摘要: The present application provides a type of fabric with a surface cooling function and a preparation method therefor. The preparation method comprises the following steps: S1. using a surface cooling material to generate a polymer-modified surface cooling material by in-situ polymerization; S2. dispersing the polymer-modified surface cooling material in a finishing solvent to obtain a functionalized fabric finishing solution; and S3. absorbing the functionalized fabric finishing solution into the fabric and then finishing the fabric with the polymer-modified surface cooling material by thermal treatment, so as to obtain the fabric with the surface cooling function. The fabric with the surface cooling function in the present application feels good and is breathable. The solution of the preparation method for the fabric with the surface cooling function in the present application is simple and feasible and applicable to large-scale production.
摘要翻译: 本申请提供了一种具有表面冷却功能的织物及其制备方法。 制备方法包括以下步骤:S1。 使用表面冷却材料通过原位聚合生成聚合物改性的表面冷却材料; S2。 将聚合物改性的表面冷却材料分散在整理溶剂中以获得官能化的织物整理溶液; 和S3。 将功能化的织物整理液吸收到织物中,然后通过热处理用聚合物改性的表面冷却材料整理织物,从而获得具有表面冷却功能的织物。 在本申请中具有表面冷却功能的织物感觉良好并且是透气的。 本申请中具有表面冷却功能的织物制备方法的解决方案简单可行,适用于大规模生产。
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公开(公告)号:US11374228B2
公开(公告)日:2022-06-28
申请号:US16609253
申请日:2017-12-14
发明人: Zijian Zheng , Dongrui Wang
IPC分类号: H01M4/74 , D06M11/83 , H01M10/0525 , H01M4/58 , H01M4/485 , H01M4/66 , D06M101/06 , D06M101/32 , H01M4/02
摘要: This disclosure provides a method for preparing a current collector. The method includes: (1) anchoring vinyl groups onto the surface of textiles through the silanization between hydroxyl groups and coupling agents; (2) synthesizing polyelectrolyte brushes through in-situ radical polymerization; and (3) obtaining catalyst ions on the polyelectrolyte brushes through ion-exchange and obtaining metal-coated layers through subsequent electroless deposition). The current collector according to the present disclosure has high electrical conductivity and excellent mechanical flexibility, and thus the lithium ion battery including the same is suitable for portable and wearable electronic devices.
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