专利号:US-12263464-B2 优先权日:2018-03-14 标题 :Method for in-situ synthesis of metal organic frameworks (MOFs), covalent organic frameworks (COFs) and zeolite imidazolate frameworks (ZIFs), and applications thereof 发明人:PAHWA DEEPAK; PAHWA VARUN; CHOUDHARY ANIL KUMAR; SONIA; JHA VIVEK KUMAR; CHAUHAN ANJALI; YADAV ANNU 权利人:DESICCANT ROTORS INTERNATIONAL PRIVATE LTD 摘要:The present invention relates to a method for the in situ synthesis of of MOFs (metal organic frameworks), COFs (covalent organic frameworks), and ZIFs (Zeolitic imidazolate framework), onto and within different types of porous substrates, and their applications. The present invention provides a unique and easy to utilize method by which a number of MOFs, COFs and ZIFs can be synthesized directly onto and within a porous substrate with high performance efficiency ensuring higher grammage in formation of adsorbent product onto and within the substrate.
专利号:US-2022089618-A1 优先权日:2019-01-29 标题:Solid-State Synthesis Of Precursors Of Metal-Organic Frameworks 发明人:MAJANO GERARDO J; FALKOWSKI JOSEPH M 权利人:EXXONMOBIL RES & ENG CO 摘要:Metal-organic frameworks (MOFs) are highly porous entities comprising a multidentate ligand coordinated to multiple metal atoms, typically as a coordination polymer. MOFs are usually produced from a solvent in powder form under hydrothermal or solvothermal synthesis conditions. Alternately, powder-form precursors of MOFs may be formed by milling or mulling a substantially solid mixture of a metal salt and a multidentate organic ligand, optionally in the presence of a small amount of a solvent. The powder-form precursors may then undergo heating, typically in the absence of applied shear, to produce the corresponding MOF. Mulling may be differentiated from milling at least in that mulling applies to the substantially solid mixture at a non-constant pressure and milling applies a constant pressure while forming the powder-form precursor. In some cases, mulling may promote more effective formation of the powder-form precursor compared to milling.
专利号:US-10737239-B2 优先权日:2015-11-27 标题 :Ultrafast high space-time-yield synthesis of metal-organic frameworks 发明人:BURCKHART JULIA; MARX STEFAN; ARNOLD LENA; HOFMANN CLAUS; Müller Ulrich 权利人:BASF SE 摘要:The invention relates to a process for the preparation of metal-organic frameworks (MOFs) in form of a homogenous powder, and a process wherein the metal-organic framework is molded into shaped bodies.
专利号:US-9951095-B2 优先权日:2014-05-16 标 题:Chromium metal organic frameworks and synthesis of metal organic frameworks 发明人:ZHOU HONG-CAI; Liu tian-fu; LIAN XIZHEN; ZOU LANFANG; FENG DAWEI 权利人:TEXAS A & M UNIV SYS 摘要:The present invention relates to monocrystalline metal organic frameworks comprising chromium ions and carboxylate ligands and the use of the same, for example their use for storing a gas. The invention also relates to methods for preparing metal organic frameworks comprising chromium, titanium or iron ions and carboxylate ligands. The methods of the invention allow such metal organic frameworks to be prepared in monocrystalline or polycrystalline forms.
专利号:US-9604902-B2 优先权日:2013-03-15 标 题 :Selective synthesis of 2-octyl acrylate by acid catalyzed esterification of 2-octanol and acrylic acid 发明人:COLBY JOSHUA L; CLEM TABITHA A; SPAWN TERENCE D; HUTT AARON E; TEPLY WADE T 权利人:3M INNOVATIVE PROPERTIES CO 摘要:A method of making 2-octyl acrylate comprising reacting 2-octanol with acrylic acid in the presence of an acid catalyst and added water is described. The 2-octanol may be derived from renewable resources, such as castor oil. The method is efficient and provides selectivity for 2-octyl acrylate.
专利号:US-11891406-B2 优先权日:2019-03-14 标题:Conductivity enhancement of MOFs via development of MOFpolymer composite material 发明人:PEEDIKAKKAL ABDUL MALIK P; AL-BETAR ABDUL-RAHMAN; AL-MOUSA AMMAR HUSSAIN 权利人:UNIV KING FAHD PET & MINERALS 摘要:A method for enhancing the conductivity of MOF-5 by the development of an MOF-5 polymer composite material. The composite material incorporates a conductive polymer, preferably polyaniline, in the solvo-thermal synthesis pathway of MOF-5. The electrically conductive MOF-5 composite exhibits electric conductivity three orders of magnitude higher than that of MOF-5 while maintaining the crystallinity, robustness, and thermal stability of MOF-5.
参考文献:10.1038/ncomms14460 摘要:Wang X, Chi C, Zhang K, Qian Y, Gupta KM, Kang Z, Jiang J, Zhao D. Reversed thermo-switchable molecular sieving membranes composed of two-dimensional metal-organic nanosheets for gas separation. Nature Communications. 2017 Feb 16;8(1):14460. doi: 10.1038/ncomms14460. 摘要:Ostrowska, K.; Kolasa, A., Science of Synthesis, (2005) 22, 423.