HKUST-1, a metal–organic framework (MOF) material containing Cu<sup>II</sup>-paddlewheel-type nodes and 1,3,5-benzenetricarboxylate struts, features accessible Cu<sup>II</sup> sites to which solvent or other desired molecules can be intentionally coordinated. As part of a broader investigation of ionic conductivity in MOFs, we unexpectedly observed substantial proton conductivity with the “as synthesized” version of this material following sorption of methanol. Although HKUST-1 is neutral, coordinated water molecules are rendered sufficiently acidic by Cu<sup>II</sup> to contribute protons to pore-filling methanol molecules and thereby enhance the alternating-current conductivity. At ambient temperature, the chemical identities of the node-...
A porous metal-organic framework (MOF), [Ni-2-(dobdc)(H2O)2]center dot 6H(2)O (Ni-2(dobdc) or Ni-MOF...
Using the concept of isomorphous replacement applied to entire ligands, a <i>C</i><sub>3</sub>-symme...
Thesis: Ph. D. in Inorganic Chemistry, Massachusetts Institute of Technology, Department of Chemistr...
ABSTRACT: HKUST-1, a metal−organic framework (MOF) material containing CuII-paddlewheel-type nodes a...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
We explored the proton conductivities of two 3D Co<sup>II</sup> metal–organic frameworks (MOFs), {[C...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
By reaction of a newly designed organic ligand, [3-(naphthalene-1-carbonyl)-thioureido] acetic acid ...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
We report a hybrid solid system, UMOM-100-a and UMOM-100-b, synthesized by incorporation of Cu-based...
Proton conductivity through two-dimensional (2-D) hydrogen-bonding networks within a layered metal–o...
A porous metal-organic framework (MOF), [Ni-2-(dobdc)(H2O)2]center dot 6H(2)O (Ni-2(dobdc) or Ni-MOF...
Using the concept of isomorphous replacement applied to entire ligands, a <i>C</i><sub>3</sub>-symme...
Thesis: Ph. D. in Inorganic Chemistry, Massachusetts Institute of Technology, Department of Chemistr...
ABSTRACT: HKUST-1, a metal−organic framework (MOF) material containing CuII-paddlewheel-type nodes a...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
We explored the proton conductivities of two 3D Co<sup>II</sup> metal–organic frameworks (MOFs), {[C...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
By reaction of a newly designed organic ligand, [3-(naphthalene-1-carbonyl)-thioureido] acetic acid ...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
We report a hybrid solid system, UMOM-100-a and UMOM-100-b, synthesized by incorporation of Cu-based...
Proton conductivity through two-dimensional (2-D) hydrogen-bonding networks within a layered metal–o...
A porous metal-organic framework (MOF), [Ni-2-(dobdc)(H2O)2]center dot 6H(2)O (Ni-2(dobdc) or Ni-MOF...
Using the concept of isomorphous replacement applied to entire ligands, a <i>C</i><sub>3</sub>-symme...
Thesis: Ph. D. in Inorganic Chemistry, Massachusetts Institute of Technology, Department of Chemistr...