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. 2012 Mar 21;2(3):292–306. doi: 10.1098/rsfs.2011.0121

Table 2.

The effect of composition on the characteristics of mesopore structures.

MBG with different compositions surface area (m2 g–1) pore volume (cm3 g–1) pore size (nm) references
100Si 490 3.6 [52]
95Si5Ca 467 3.7
90Si10Ca 438 3.5
100Si 310 0.356 4.2 [55]
97.5SiP2.5 (TEP)a 270 0.308 4.4
97.5SiP2.5 (H3PO4)b 152 0.235 4.8
80Si15Ca5P 351 0.49 4.6 [41]
70Si15Ca5P 319 0.49 4.6
60Si15Ca5P 310 0.43 4.3
100Si 384 0.4 4.9 [48]
90Si5Ca5P 330 0.35 4.9
80Si15Ca5P 351 0.36 4.8
70Si25Ca5P 303 0.33 4.8
80Si10Ca5P5Fe 260 0.26 3.5 [88]
80Si5Ca5P10Fe 334 0.3 3.6
80Si0Ca5P15Fe 367 0.36 3.7
80Si15Ca5P 342 0.38 3.62 [66,89]
80Si10Ca5P5Mg 274 0.35 3.31
80Si10Ca5P5Zn 175 0.23 3.33
80Si10Ca5P5Cu 237 0.31 3.66
80Si10Ca5P5Sr 247 0.31 3.66
80Si15Ca5P 515 0.58 4.7 [90]
76.5Si15Ca5P3.5Ce 397 0.38 2.9
76.5Si15Ca5P3.5Ga 335 0.31 3.8
80Si15Ca5P 265 0.33 5.29 [50]
75Si15Ca5P5B 234 0.24 5.28
70Si15Ca5P10B 194 0.21 5.09
80Si15Ca5P 317 0.37 4.1 [39]
80Si10Ca5P5Zr 287 0.32 3.7
80Si5Ca5P10Zr 278 0.33 4.1
80Si5P15Zr 277 0.27 3.4

a97.5SiP2.5 (TEP): triethyl phosphate as the P resource.

b97.5SiP2.5 (H3PO4): H3PO4 as P resource.