Implementation of a strategy for achieving extraordinary levels of surface area and porosity in crystals
申请人:The Regents of the University of Michigan
公开号:US20040225134A1
公开(公告)日:2004-11-11
The present invention provides a metal-organic framework (“MOF”) comprising a plurality of metal clusters and a plurality of multidentate linking ligands. Each metal of the plurality of metal clusters comprises one or more metal ions. Each ligand of the plurality of multidentate linking ligands connects adjacent metal clusters. The present invention also provides a method of forming the metal-organic framework. The method of the invention comprises combining a solution comprising one or metal ions with a multidentate linking ligand having a sufficient number of accessible sites for atomic or molecular adsorption that the surface area of the resulting metal-organic framework is greater than 2,900 m
2
/g.
Homochiral 3D lanthanide coordination networks with an unprecedented 4966 topology
作者:Yong Cui、Helen L. Ngo、Peter S. White、Wenbin Lin
DOI:10.1039/b204249e
日期:2002.7.25
Homochiral 3D metal-organic open frameworks based on enantiopure atropisomeric dicarboxylic acid bridging ligands and dilanthanide secondary building units exhibit an unprecedented 4(9)6(6) topology, and possess ethoxy-protected BINOL functionalities that are pointing toward the open channels.
MOFs with a high surface area and methods for producing them
申请人:THE REGENTS OF THE UNIVERSITY OF MICHIGAN
公开号:EP1633760B1
公开(公告)日:2010-05-05
Doped metal organic frameworks for reversible H2 storage at ambient temperature
申请人:Goddard William A.
公开号:US20090005243A1
公开(公告)日:2009-01-01
Metal-organic frameworks (MOFs) are provided. An exemplary MOF includes a plurality of metal clusters, at least one linking ligand, and at least one dopant. Doped MOFs according to embodiments of the present invention have significantly increased H2 uptake capacity, and some embodiments meet the 2010 DOE H2 storage target of 6 wt % at a temperature ranging from −30 to 80° C. and a pressure less than or equal to 100 bar.