by
Algül, Berrin Pınar.
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) thin-films.200 nm thick YBCO thin films were deposited using a dc Inverted Cylindrical Magnetron Sputtering
by
Ölçer Altınsoy, Yekta Arya, author.
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electrochemical impedance spectroscopy (EIS). The electrochemical QCM (eQCM) was used to develop thin polymer
by
Yakar, Ozan, author.
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. Porous polyethylene membrane has been used to create thin films of water-soluble materials, such as
by
Alduran, Yeşim, author.
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photocatalysts were calculated. All thin films could not reach super hydrophilicity state. Undoped TiO2 contact
by
Akgün, Begüm, author.
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In recent years, Layer-by-Layer (LbL) assembly of thin films has been extensively investigated for
by
Demirhan, Yasemin, author.
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fabrication, Bi2Sr2CaCu2O8+x thin films were deposited by DC and RF magnetron sputtering system on saphirre
by
Ekici, Çağın, author.
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surfaces. Indeed, optical thin films attract a great deal of attention especially the ones coated on silica
68.
by
Güzelaydın, Abdurrahman Halis, author.
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interdigit spacing followed by drying on hotplate at 60 °C for 30 min to deposit thin-films. The thin
by
Akın, Osman.
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employed to characterize the third order nonlinear optical properties of the thin films and pump-probe
by
Kır, Serap.
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gas thermal chemical vapor deposition method on very thin Cobalt and Iron catalyst thin films
by
Aksak, Meral.
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Alıntı:
vapor deposition method on very thin Cobalt, Iron, and Nickel catalyst thin films deposited onto SiO2/Si
by
Öktem, Bülent.
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Alıntı:
) thin films deposited on <100>-oriented and 10x10x1-0.5 mm3 sized single crystal MgO substrates by using
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