Complex impedance measurements on single crystals and pellets of a CuCo-orotate coordination polymer, as a function of relative humidity and temperature, reveal proton conduction with a relatively high thermal activation energy, a negligible isotope effect, a large pre-exponential factor in the conductivity model, and a strong dependence on humidity, all of which are consistent with a vehicle mechanism. The proton conductivity found for this polymer compares favorably with that of MOFs and related porous materials even though it has no framework with pores and channels to provide proton-conduction pathways
A cationic conductive polymer is described herein which generally comprises a proton donating polyme...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
Complex impedance measurements on single crystals and pellets of a CuCo-orotate coordination polymer...
Complex impedance measurements on single crystals and pellets of a CuCo-orotate coordination polymer...
Abstract Nonporous coordination polymers (npCPs) able to accommodate molecules through internal latt...
We report the proton conduction properties of a 2D flexible MOF and a 1D coordination polymer having...
Keggin-type polyoxometalate (POM)-based compounds have long been considered as one of the environmen...
The mechanism of proton conductivity in porous solids (i.e., Grotthuss or vehicular) is related to t...
HKUST-1, a metal–organic framework (MOF) material containing Cu<sup>II</sup>-paddlewheel-type nodes ...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
Crystalline metal phosphonates are referred to as a type of structurally versatile coordination poly...
A cationic conductive polymer is described herein which generally comprises a proton donating polyme...
A cationic conductive polymer is described herein which generally comprises a proton donating polyme...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
Complex impedance measurements on single crystals and pellets of a CuCo-orotate coordination polymer...
Complex impedance measurements on single crystals and pellets of a CuCo-orotate coordination polymer...
Abstract Nonporous coordination polymers (npCPs) able to accommodate molecules through internal latt...
We report the proton conduction properties of a 2D flexible MOF and a 1D coordination polymer having...
Keggin-type polyoxometalate (POM)-based compounds have long been considered as one of the environmen...
The mechanism of proton conductivity in porous solids (i.e., Grotthuss or vehicular) is related to t...
HKUST-1, a metal–organic framework (MOF) material containing Cu<sup>II</sup>-paddlewheel-type nodes ...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
Crystalline metal phosphonates are referred to as a type of structurally versatile coordination poly...
A cationic conductive polymer is described herein which generally comprises a proton donating polyme...
A cationic conductive polymer is described herein which generally comprises a proton donating polyme...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...