Volumes and areas calculated from the idealized framework model
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| Occupiable Volume | 2116.01 | Å3 | (15.6 | %) | |||||
| Accessible Volume | 2114.06 | Å3 | (15.58 | %) | |||||
| Occupiable Area | 2825.23 | Å2 | (1310.96 | m2/g) | |||||
| Accessible Area | 2811.77 | Å2 | (1304.72 | m2/g) | |||||
| Specific Occupiable Area | 2082.46 | m2/cm3 | |||||||
| Specific Accessible Area | 2072.54 | m2/cm3 | |||||||
| Maximum diameter of a sphere: | |||||||||
| that can be included | 8.43 | Å | |||||||
| that can diffuse along | a: 4.93 | Å | b: 4.93 | Å | c: 2.54 | Å | |||
| Explanations | |||||
| Occupiable volume | That portion of the available volume within the cell that can be visited by the center of a (spherical) water molecule (radius = 1.4Å). The available volume is the unit cell volume remaining after the van der Waals atomic sphere volumes are subtracted. | ||||
| Occupiable area | The area of that surface visited by the center of the water molecule. | ||||
| Accessible volume | That portion of the occupiable volume that has continuity between all unit unit cells. Some pores/cavities have windows that are too small to allow the water molecule access, and so represent isolated occupiable regions. | ||||
| Accessible area | The area of that surface visited by the center of the water molecule. | ||||
| Specific occupiable area | Occupiable area per unit volume | ||||
| Specific accessible area | Accessible area per unit volume | ||||
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