by
Ziyanak, Esen, author.
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(SPME) fiber on the same chromatographic run. Bare silica fibers were immersed into agarose matrix
by
Tunç, Irmak, author.
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dosage level, ~180 ppm increase is seen at soluble silica level. As a result of these tests, a new
by
Esen, Meral, author.
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. Characterization of baicalin-functionalized monolithic silica and molecularly imprinted silica was achieved by SEM
by
Çolpankan, Oylum, author.
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fabrics. In this study, for the production of STFs, colloidal and fumed silica nanoparticles were employed
by
Boyacı, Ezel.
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In the first part of the study, amino-, mercapto- and bifunctional silica-based solid phase
by
Yıldırım, Zeynep Elvan.
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vapor /kg silica gel) at 35 °C, 19% (kg water vapor/kg silica gel) at 45 °C and 11% (kg water vapor /kg
by
Özturk İlgü, Ekin.
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. Cytotoxicity and genotoxicity induced both silica and borosilicate nanoparticles were investigated for the cell
by
Erdem, Arzu.
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several functional groups (amino, mercapto, etc.) on silica. Among the sorbents developed, 3-MPTMS-silica
by
Sulubaş, Şavval, author.
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nanoparticles led to a contact angle (CA) of 92°, while an equal amount of bi-modal silica particles increased
by
Özyurt, Ömer, author.
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molecularly imprinted chitosan polymer (MMICP) and silica (sol-gel) based molecularly imprinted polymer (IMIP
by
Mutlu, Vahide Nuran, author.
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) incorporated mesoporous silica (TPA-SBA-15), sulfated La incorporated titania-silica (SO4/La-TiO2-SiO2
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Aydın, Utku, author.
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of butanol. Therefore, Zr incorporated SBA-15 silica materials with two different amount of zirconia
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