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“…Another strategy is to act on the interface between the inside of a mesoporous particle and the outside environment by capping the pore mouths with photosensitive molecules20 or covalently bound nanoparticles that can be cleaved chemically 21. 22 Of course, the interest in release studies is especially driven by important biological applications such as drug delivery4, 8, 23 and bone grafting,24, 25 but also by highly interesting nonbiological uses, which mainly inspired us. Especially the recent ban on chromates in the metals industry has stimulated the development of new concepts for corrosion protection.…”
Section: Introductionmentioning
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rupbmjkragerfmgwileyiopcupepmcmbcthiemesagefrontiersapsiucrarxivemeralduhksmucshluniversity-of-gavle
“…Another strategy is to act on the interface between the inside of a mesoporous particle and the outside environment by capping the pore mouths with photosensitive molecules20 or covalently bound nanoparticles that can be cleaved chemically 21. 22 Of course, the interest in release studies is especially driven by important biological applications such as drug delivery4, 8, 23 and bone grafting,24, 25 but also by highly interesting nonbiological uses, which mainly inspired us. Especially the recent ban on chromates in the metals industry has stimulated the development of new concepts for corrosion protection.…”
Section: Introductionmentioning
“…Si [6] indicated that ultra-high molecular weight polyethylene UHMWPE was suited to acetabular components of hip joint and cushions, while UHMWPE could not be applied for total joint. Furthermore, bioceramic materials have been investigated for joint replacement because of their reduced wear rates and an increased corrosion resistance, such as calcium phosphate materials [7,8], alumina ceramic [9] and zirconia [10]. However, brittleness fracture and poor machinability have been reported as major concerns for these ceramic materials.…”
Section: Introductionmentioning
“…Hydroxyapatite (HA or HAP), with the molecular formula Ca 10 (PO 4 ) 6 (OH) 2 , is the main inorganic component of the hard tissues in bones and teeth, and is widely studied and used in clinical applications to fi ll or restore damaged human calcifi ed tissue because of its excellent bioactivity, nontoxicity and biocompatibility [7][8][9][10][11][12][13] .…”
Section: Introductionmentioning