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Simple equations predict hydrogen storage in porous materials
A new set of simple equations can fast-track the search for metal-organic frameworks (MOFs), a Nobel-Prize-winning class of ...
In recent years, two-dimensional (2D) single-crystalline metal nanosheets have emerged as a promising next-generation ...
The latest short science news items from C&EN. Porous materials can potentially store hydrogen in a more compact way. For instance, metal-organic frameworks (MOFs) have an open scaffold structure that ...
A new catalyst structure offers a potential pathway toward more cost-effective hydrogen production via water electrolysis. The material centers on mesoporous single-crystalline Co3O4 doped with ...
A strategy of multiscale collaborative design which combines high-entropy effect, dual-phase composition, highly porous structure and foam-gelcasting-freeze drying technique leads to uniform element ...
Several factors, such as surface area, pore size distribution, temperature, pressure, and the nature of both the gas and porous material, influence the rate and extent of gas sorption. The size and ...
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