On-board fuel cell technology requires proton conducting materials with high conductivity not only at intermediate temperatures for work but also at room temperature and even at subzero temperature for startup when exposed to the colder climate. To develop such materials is still challenging because many promising candidates for the proton transport on the basis of extended microstructures of water molecules suffer from significant damage by heat at temperatures above 80 °C or by freeze below −5 °C. Here we show imidazole loaded tetrahedral polyimides with mesopores and good stability (Im@Td-PNDI <b>1</b> and Im@Td-PPI <b>2</b>) exhibiting a high anhydrous proton conductivity over a wide temperature range from −40 to 90 °C. Among all anhydr...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Polyoxometalates (POMs), which possess strong acidity and chemical stability, are promising solid pr...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
The design and fabrication of high proton conductors over a wide working temperature range are signi...
Imidazolium methanesulfonate (1) has been studied as a model proton conductor for high temperature p...
Metal–organic frameworks (MOFs), as newly emerging materials, show compelling intrinsic structural f...
Extensive studies on a model system (imidazole-terminated ethylene oxide oligomers doped with small...
Proton transport is a fundamental process that can be found in many systems in nature, as well as in...
Polymers containing tethered benzimidazole revealed that the mitigating factors for proton conductio...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Polymer electrolyte membrane fuel cells (PEMFCs) have been looked as potential alternative energy co...
Proton transport has been recognized as an essential process in many biological systems, as well as ...
Proton transport has been recognized as an essential process in many biological systems, as well as ...
Membranes with high anhydrous proton conducting properties have attracted remarkable interest as pol...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Polyoxometalates (POMs), which possess strong acidity and chemical stability, are promising solid pr...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
The design and fabrication of high proton conductors over a wide working temperature range are signi...
Imidazolium methanesulfonate (1) has been studied as a model proton conductor for high temperature p...
Metal–organic frameworks (MOFs), as newly emerging materials, show compelling intrinsic structural f...
Extensive studies on a model system (imidazole-terminated ethylene oxide oligomers doped with small...
Proton transport is a fundamental process that can be found in many systems in nature, as well as in...
Polymers containing tethered benzimidazole revealed that the mitigating factors for proton conductio...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Polymer electrolyte membrane fuel cells (PEMFCs) have been looked as potential alternative energy co...
Proton transport has been recognized as an essential process in many biological systems, as well as ...
Proton transport has been recognized as an essential process in many biological systems, as well as ...
Membranes with high anhydrous proton conducting properties have attracted remarkable interest as pol...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Polyoxometalates (POMs), which possess strong acidity and chemical stability, are promising solid pr...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...