Search Results - "Tanasa, E."
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Bioinspired silk fibroin nano-delivery systems protect against 5-FU induced gastrointestinal mucositis in a mouse model and display antitumor effects on HT-29 colorectal cancer cells in vitro
Published in Nanotoxicology (01-09-2021)“…Colorectal cancer (CRC), is the second cause of cancer-related deaths worldwide is one of the most prevalent types of cancers. Conventional treatment continues…”
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Epitaxial highly ordered Sb:SnO2 nanowires grown by the vapor liquid solid mechanism on m-, r- and a-Al2O3
Published in Nanoscale advances (15-05-2019)“…Epitaxial, highly ordered Sb:SnO 2 nanowires were grown by the vapor–liquid–solid mechanism on m-, r- and a-Al 2 O 3 between 700 °C and 1000 °C using metallic…”
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Photodegradation process of Eosin Y using ZnO/SnO2 nanocomposites as photocatalysts: experimental study and neural network modeling
Published in Journal of materials science (01-11-2013)“…A series of coupled ZnO/SnO 2 nanocomposites were prepared with different molar ratios (1:10, 1:2, 2:1, and 10:1), using a homogeneous co-precipitation method…”
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4
Epitaxial highly ordered Sb:SnO nanowires grown by the vapor liquid solid mechanism on m-, r- and a-AlO
Published in Nanoscale advances (15-05-2019)“…Epitaxial, highly ordered Sb:SnO 2 nanowires were grown by the vapor-liquid-solid mechanism on m-, r- and a-Al 2 O 3 between 700 °C and 1000 °C using metallic…”
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Journal Article -
5
Epitaxial highly ordered Sb:SnO 2 nanowires grown by the vapor liquid solid mechanism on m-, r- and a-Al 2 O 3
Published in Nanoscale advances (15-05-2019)“…Epitaxial, highly ordered Sb:SnO 2 nanowires were grown by the vapor–liquid–solid mechanism on m-, r- and a-Al 2 O 3 between 700 °C and 1000 °C using metallic…”
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Journal Article -
6
Photodegradation process of eosin y using ZNO/Sn[O.sub.2] nanocomposites as photocatalysts: experimental study and neural network modeling
Published in Journal of materials science (15-11-2013)“…A series of coupled ZnO/Sn[O.sub.2] nanocomposites were prepared with different molar ratios (1:10, 1:2, 2:1, and 10:1), using a homogeneous co-precipitation…”
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