2022
DOI: 10.1016/j.ijbiomac.2022.08.183
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Effect of geometric modification of fumed nanoscale silica for medical applications on adsorption of human serum albumin: Physicochemical and surface properties

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Cited by 8 publications
(21 citation statements)
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“…The details of the geometric modification are described in our previous paper. 39 The textural parameters of the obtained nanosilica materials after geometric modification were evaluated based on nitrogen adsorption/desorption isotherms, i.e., the specific surface area 296 m 2 g À1 , 286 m 2 g À1 , 283 m 2 g À1 , the average pore diameter 16.6 nm, 15.1 nm, 10.3 nm, and the total pore volume 1.15 cm 3 g À1 , 1.0 cm 3 g À1 , 0.71 cm 3 g À1 for GM-1 h, GM-4 h, and GM-7 h, respectively. 39 The maximal bulk density, d b = 275 g cm À3 (V em = 3.2 cm 3 g À1 ) was reached for the GMtreated sample in 7 h (GM-7 h).…”
Section: Chemicals and Materialsmentioning
confidence: 99%
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“…The details of the geometric modification are described in our previous paper. 39 The textural parameters of the obtained nanosilica materials after geometric modification were evaluated based on nitrogen adsorption/desorption isotherms, i.e., the specific surface area 296 m 2 g À1 , 286 m 2 g À1 , 283 m 2 g À1 , the average pore diameter 16.6 nm, 15.1 nm, 10.3 nm, and the total pore volume 1.15 cm 3 g À1 , 1.0 cm 3 g À1 , 0.71 cm 3 g À1 for GM-1 h, GM-4 h, and GM-7 h, respectively. 39 The maximal bulk density, d b = 275 g cm À3 (V em = 3.2 cm 3 g À1 ) was reached for the GMtreated sample in 7 h (GM-7 h).…”
Section: Chemicals and Materialsmentioning
confidence: 99%
“…39 The textural parameters of the obtained nanosilica materials after geometric modification were evaluated based on nitrogen adsorption/desorption isotherms, i.e., the specific surface area 296 m 2 g À1 , 286 m 2 g À1 , 283 m 2 g À1 , the average pore diameter 16.6 nm, 15.1 nm, 10.3 nm, and the total pore volume 1.15 cm 3 g À1 , 1.0 cm 3 g À1 , 0.71 cm 3 g À1 for GM-1 h, GM-4 h, and GM-7 h, respectively. 39 The maximal bulk density, d b = 275 g cm À3 (V em = 3.2 cm 3 g À1 ) was reached for the GMtreated sample in 7 h (GM-7 h). Mechanical treatments of nanosilica samples give a higher bulk density of the powder (i.e., d b = 191 g cm À3 , V em = 4.8 cm 3 g À1 for GM-1 h, d b = 234 g cm À3 , V em = 3.8 cm 3 g À1 for GM-4 h).…”
Section: Chemicals and Materialsmentioning
confidence: 99%
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