The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages

M Olejnik, M Breisch, V Sokolova, K Loza… - Science of The Total …, 2021 - Elsevier
Silica fibers with a dimension of 0.3 μm∙ 3.2 μm 2 nm were prepared by a modified Stöber
synthesis as model particles. The particles were characterized by scanning electron …

The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages.

M Olejnik, M Breisch, V Sokolova, K Loza… - The Science of the …, 2021 - europepmc.org
Silica fibers with a dimension of 0.3 μm∙ 3.2 μm 2 nm were prepared by a modified Stöber
synthesis as model particles. The particles were characterized by scanning electron …

The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages.

M Olejnik, M Breisch, V Sokolova, K Loza, O Prymak… - 2021 - cabidigitallibrary.org
Silica fibers with a dimension of 0.3 μm. 3.2 μm2 nm were prepared by a modified Stöber
synthesis as model particles. The particles were characterized by scanning electron …

[引用][C] The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages

M Olejnik, M Breisch, V Sokolova… - Science of the Total …, 2021 - ui.adsabs.harvard.edu
The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages - NASA/ADS Now on home page
ads icon ads Enable full ADS view NASA/ADS The effect of short silica fibers (0.3 μm 3.2 μm) on …

The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages

M Olejnik, M Breisch, V Sokolova… - The Science of the …, 2021 - pubmed.ncbi.nlm.nih.gov
Silica fibers with a dimension of 0.3 μm∙ 3.2 μm 2 nm were prepared by a modified Stöber
synthesis as model particles. The particles were characterized by scanning electron …

The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages

M Olejnik, M Breisch, V Sokolova, K Loza… - Science of the Total …, 2021 - inis.iaea.org
[en] Highlights:• Silica fibers can be prepared by microemulsion synthesis. Upon heating,
they convert to crystalline alpha-cristobalite (silicon dioxide).• The fibers are taken up by …

[引用][C] The effect of short silica fibers (0.3 μm 3.2 μm) on macrophages

M Olejnik, M Breisch, V Sokolova, K Loza, O Prymak… - 2021