Invention Grant
- Patent Title: Complex comprising crystalline hybrid nanoporous material powder
- Patent Title (中): 复合物包含晶体混合纳米多孔材料粉末
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Application No.: US14238917Application Date: 2012-08-14
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Publication No.: US09302258B2Publication Date: 2016-04-05
- Inventor: Jong-San Chang , U-Hwang Lee , Young Kyu Hwang , Dong Won Hwang , You-Kyong Seo , Ji Sun Lee , Ji Woong Yoon , Kyu Eun Shim
- Applicant: Jong-San Chang , U-Hwang Lee , Young Kyu Hwang , Dong Won Hwang , You-Kyong Seo , Ji Sun Lee , Ji Woong Yoon , Kyu Eun Shim
- Applicant Address: KR Daejeon
- Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY
- Current Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY
- Current Assignee Address: KR Daejeon
- Agency: Ladas & Parry LLP
- Priority: KR10-2011-0081272 20110816
- International Application: PCT/KR2012/006488 WO 20120814
- International Announcement: WO2013/025046 WO 20130221
- Main IPC: B01J31/06
- IPC: B01J31/06 ; C01G23/00 ; C01G25/00 ; C01G31/00 ; C01G37/00 ; C01G49/00 ; C01G3/00 ; B01J20/26 ; B01J20/30 ; B01J20/22 ; B01J20/28

Abstract:
The present invention relates to a complex and a method for manufacturing same, the complex comprising: at least one crystalline hybrid nanoporous material powder, in which a metal ion, or a metal ion cluster to which oxygen is bound, and an organic ligand, or the organic ligand and a negative ion ligand are in a coordinate covalent bond; and at least one organic polymer additive, or at least one organic polymer additive and an inorganic additive, wherein the shape of the complex is spherical or pseudo-spherical, the size of the complex is 0.1 to 100 mm, a total volume of pores is 5 or more volume % based on the sum of a total volume of nanoporous material having a size of at most 10 nm and a total volume of pores having a size of at least 0.1 μm, and wherein a non-surface value per weight (m2/g) of the complex as at least 83% of a non-surface value per weight (m2/g) of the nanoporous material powder.
Public/Granted literature
- US20140287235A1 COMPLEX COMPRISING CRYSTALLINE HYBRID NANOPOROUS MATERIAL POWDER Public/Granted day:2014-09-25
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