Invention Grant
US08569391B2 Ordered porous mesostructured materials from nanoparticle-block copolymer self-assembly
有权
来自纳米颗粒 - 嵌段共聚物自组装的有序多孔介孔结构材料
- Patent Title: Ordered porous mesostructured materials from nanoparticle-block copolymer self-assembly
- Patent Title (中): 来自纳米颗粒 - 嵌段共聚物自组装的有序多孔介孔结构材料
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Application No.: US12812714Application Date: 2009-01-13
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Publication No.: US08569391B2Publication Date: 2013-10-29
- Inventor: Scott Warren , Ulrich Wiesner , Francis J. DiSalvo, Jr.
- Applicant: Scott Warren , Ulrich Wiesner , Francis J. DiSalvo, Jr.
- Applicant Address: US NY Ithaca
- Assignee: Cornell University
- Current Assignee: Cornell University
- Current Assignee Address: US NY Ithaca
- Agency: Harris Beach PLLC
- International Application: PCT/US2009/030860 WO 20090113
- International Announcement: WO2009/097184 WO 20090806
- Main IPC: C08F297/02
- IPC: C08F297/02 ; B22F9/24 ; B22F7/02

Abstract:
The invention provides mesostructured materials and methods of preparing mesostructured materials including metal-rich mesostructured nanoparticle-block copolymer hybrids, porous metal-nonmetal nanocomposite mesostructures, and ordered metal mesostructures with uniform pores. The nanoparticles can be metal, metal alloy, metal mixture, intermetallic, metal-carbon, metal-ceramic, semiconductor-carbon, semiconductor-ceramic, insulator-carbon or insulator-ceramic nanoparticles, or combinations thereof. A block copolymer/ligand-stabilized nanoparticle solution is cast, resulting in the formation of a metal-rich (or semiconductor-rich or insulator-rich) mesostructured nanoparticle-block copolymer hybrid. The hybrid is heated to an elevated temperature, resulting in the formation of an ordered porous nanocomposite mesostructure. A nonmetal component (e.g., carbon or ceramic) is then removed to produce an ordered mesostructure with ordered and large uniform pores.
Public/Granted literature
- US20110130478A1 ORDERED POROUS MESOSTRUCTURED MATERIALS FROM NANOPARTICLE-BLOCK COPOLYMER SELF-ASSEMBLY Public/Granted day:2011-06-02
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