by
Gül, Aytaç, author.
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El Yazması
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preparation of gold nanorods and nanoparticles-based LSPR-S detection of model antibody-antigen and
by
Demirkurt, Merve, author.
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El Yazması
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analysis of real water samples. The preparation of MIP nanoparticles encapsulated in electrospun
by
Çetintaş, Ceyla, author.
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El Yazması
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biocompatibility, functionalized gold nanoparticles have been extensively employed as drug and gene delivery
by
Çolpankan, Oylum, author.
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El Yazması
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fabrics. In this study, for the production of STFs, colloidal and fumed silica nanoparticles were employed
by
Horzum Polat, Nesrin.
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El Yazması
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CeO2 and LiCoO2 precursors and SiO2 nanoparticles were used for the photocatalytic degradation of
by
Boyacı, Ezel.
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El Yazması
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nanoparticles embedded into an agarose matrix. The detection of the solid phase microextracted analytes was
by
Saygı, Gizem, author.
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El Yazması
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successfully with Ag nanoparticles. The adsorption and photocatalytic activity of these adsorbents/catalysts
by
Sulubaş, Şavval, author.
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El Yazması
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nanoparticles led to a contact angle (CA) of 92°, while an equal amount of bi-modal silica particles increased
by
Önbaş, Rabia, author.
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El Yazması
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formulation, which comprises alginate, magnetic nanoparticles, and cells, was developed. Further, biopatterned
by
Arslantaş, Duygu, author.
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detail using citrate–capped gold nanoparticles as an efficient fluorescence quencher. Further, the
by
Tekin, Sinem, author.
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El Yazması
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and drying cycles were intended to fill the pores by GDC nanoparticles which are expected to densify
by
Mezgil, Bahadır, author.
Format:
El Yazması
Alıntı:
sucrose concentrations in solutions and to classify bacteria concentrations. Some metal nanoparticles are
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