A conductive phosphonate metal–organic framework (MOF), [{Cu(H2O)}(2,6‐NDPA)0.5] (NDPA = naphthalenediphosphonic acid), which contains a 2D inorganic building unit (IBU) comprised of a continuous edge‐sharing sheet of copper phosphonate polyhedra is reported. The 2D IBUs are connected to each other via polyaromatic 2,6‐NDPA's, forming a 3D pillared‐layered MOF structure. This MOF, known as TUB40, has a narrow band gap of 1.42 eV, a record high average electrical conductance of 2 × 102 S m−1 at room temperature based on single‐crystal conductivity measurements, and an electrical conductance of 142 S m−1 based on a pellet measurement. Density functional theory (DFT) calculations reveal that the conductivity is due to an excitation from the hi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
A one‐dimensional nanotubular metal–organic framework (MOF) [Ni(Cu‐H4TPPA)]⋅2 (CH3)2NH2+ (H8TPPA=5,1...
We report a strategy for realizing tunable electrical conductivity in metal-organic frameworks (MOFs...
A conductive phosphonate metal–organic framework (MOF), [{Cu(H2O)}(2,6‐NDPA)0.5] (NDPA = naphthalene...
Herein, the first semiconducting and magnetic phosphonate metal–organic framework (MOF), TUB75, is r...
Herein, the first semiconducting and magnetic phosphonate metal organic framework MOF , TUB75, is ...
Herein, we report on the synthesis of a microporous, three-dimensional phosphonate metal-organic fra...
Herein, the first semiconducting and magnetic phosphonate metal organic framework MOF , TUB75, is r...
Herein, the design and synthesis of a highly photoluminescent and electrically conductive metal–orga...
Electrically conductive metal–organic frameworks (MOFs) and MOF-like coordination polymers are an em...
Two-dimensional electrically conductive metal-organic frameworks (MOFs) have emerged as promising mo...
Conductive metal-organic frameworks are opening new perspectives for the use of these porous materia...
We report the first result of a study in which molecular iodine has been incorporated via incipient ...
The combination of organic and inorganic chemical building blocks to form metal-organic frameworks (...
Isostructural metal–organic frameworks (MOFs) M[subscript 2](TTFTB) (M = Mn, Co, Zn, and Cd; H[subsc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
A one‐dimensional nanotubular metal–organic framework (MOF) [Ni(Cu‐H4TPPA)]⋅2 (CH3)2NH2+ (H8TPPA=5,1...
We report a strategy for realizing tunable electrical conductivity in metal-organic frameworks (MOFs...
A conductive phosphonate metal–organic framework (MOF), [{Cu(H2O)}(2,6‐NDPA)0.5] (NDPA = naphthalene...
Herein, the first semiconducting and magnetic phosphonate metal–organic framework (MOF), TUB75, is r...
Herein, the first semiconducting and magnetic phosphonate metal organic framework MOF , TUB75, is ...
Herein, we report on the synthesis of a microporous, three-dimensional phosphonate metal-organic fra...
Herein, the first semiconducting and magnetic phosphonate metal organic framework MOF , TUB75, is r...
Herein, the design and synthesis of a highly photoluminescent and electrically conductive metal–orga...
Electrically conductive metal–organic frameworks (MOFs) and MOF-like coordination polymers are an em...
Two-dimensional electrically conductive metal-organic frameworks (MOFs) have emerged as promising mo...
Conductive metal-organic frameworks are opening new perspectives for the use of these porous materia...
We report the first result of a study in which molecular iodine has been incorporated via incipient ...
The combination of organic and inorganic chemical building blocks to form metal-organic frameworks (...
Isostructural metal–organic frameworks (MOFs) M[subscript 2](TTFTB) (M = Mn, Co, Zn, and Cd; H[subsc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
A one‐dimensional nanotubular metal–organic framework (MOF) [Ni(Cu‐H4TPPA)]⋅2 (CH3)2NH2+ (H8TPPA=5,1...
We report a strategy for realizing tunable electrical conductivity in metal-organic frameworks (MOFs...