The effect of patterned titanium substrates on the properties of silver-doped hydroxyapatite coatings

Detaylı Bibliyografya
Parent link:Surface and Coatings Technology: Scientific Journal
Vol. 276.— 2015.— [P. 595–601]
Müşterek Yazar: Национальный исследовательский Томский политехнический университет (ТПУ) Физико-технический институт (ФТИ) Кафедра теоретической и экспериментальной физики (ТиЭФ) Центр технологий (ЦТ)
Diğer Yazarlar: Grubova I. Yu. Irina Yurievna, Surmeneva M. A. Maria Alexandrovna, Ivanova A. A. Anna Aleksandrovna, Kravchuk K. S. Konstantin Sergeevich, Prymak O. Oleg, Epple M. Mattias, Buck V. Volker, Surmenev R. A. Roman Anatolievich
Özet:Title screen
This paper reports the effect of substrate nano/micro-structure design on the grain size, mechanical properties and surface wettability of nanostructured radio frequency (RF) magnetron sputter-deposited silver-containing hydroxyapatite (Ag-HA) coatings containing 0.13–0.36 wt.% silver. The results of this study revealed that the Ag-HA coating microstructure could be designed by controlling the pre-treated surface topography of titanium. The nano/micro-patterned surfaces of titanium were prepared by sand-blasting followed by acid-etching. The size of the nano-patterns on the surface of titanium was also affected by the sand-blasting procedure; namely, the lower the pressure was, the larger the size of the nano-structures and the distance between them. The effect of the coating grain size on the surface wettability and physico-mechanical properties of the biocomposites was revealed. The hydrophobic properties were imparted to the rough titanium by a nanostructured Ag-HA coating. Although according to the XRD patterns the coatings were mainly composed of HA, some differences in the morphology were observed. Therefore, the decreased wettability of the Ag-HA coatings could be explained by taking into account the different grain sizes of the films rather than the changes to the surface chemistry. Nanoindentation studies revealed that in the case of the Ag-HA-coated samples, smaller grains resulted in significantly higher nanohardness and Young's modulus.
Режим доступа: по договору с организацией-держателем ресурса
Dil:İngilizce
Baskı/Yayın Bilgisi: 2015
Konular:
Online Erişim:http://dx.doi.org/10.1016/j.surfcoat.2015.06.010
Materyal Türü: Elektronik Kitap Bölümü
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=642890

MARC

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200 1 |a The effect of patterned titanium substrates on the properties of silver-doped hydroxyapatite coatings  |f I. Yu. Grubova [et al.] 
203 |a Text  |c electronic 
300 |a Title screen 
320 |a [References: p. 601 (53 tit.)] 
330 |a This paper reports the effect of substrate nano/micro-structure design on the grain size, mechanical properties and surface wettability of nanostructured radio frequency (RF) magnetron sputter-deposited silver-containing hydroxyapatite (Ag-HA) coatings containing 0.13–0.36 wt.% silver. The results of this study revealed that the Ag-HA coating microstructure could be designed by controlling the pre-treated surface topography of titanium. The nano/micro-patterned surfaces of titanium were prepared by sand-blasting followed by acid-etching. The size of the nano-patterns on the surface of titanium was also affected by the sand-blasting procedure; namely, the lower the pressure was, the larger the size of the nano-structures and the distance between them. The effect of the coating grain size on the surface wettability and physico-mechanical properties of the biocomposites was revealed. The hydrophobic properties were imparted to the rough titanium by a nanostructured Ag-HA coating. Although according to the XRD patterns the coatings were mainly composed of HA, some differences in the morphology were observed. Therefore, the decreased wettability of the Ag-HA coatings could be explained by taking into account the different grain sizes of the films rather than the changes to the surface chemistry. Nanoindentation studies revealed that in the case of the Ag-HA-coated samples, smaller grains resulted in significantly higher nanohardness and Young's modulus. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Surface and Coatings Technology  |o Scientific Journal 
463 |t Vol. 276  |v [P. 595–601]  |d 2015 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
701 1 |a Grubova  |b I. Yu.  |c physicist  |c engineer-researcher of Tomsk Polytechnic Universit  |f 1989-  |g Irina Yurievna  |3 (RuTPU)RU\TPU\pers\32674  |9 16573 
701 1 |a Surmeneva  |b M. A.  |c specialist in the field of material science  |c engineer-researcher of Tomsk Polytechnic University, Associate Scientist  |f 1984-  |g Maria Alexandrovna  |3 (RuTPU)RU\TPU\pers\31894  |9 15966 
701 1 |a Ivanova  |b A. A.  |c physicist  |c engineer-researcher of Tomsk Polytechnic University  |f 1986-  |g Anna Aleksandrovna  |3 (RuTPU)RU\TPU\pers\34747 
701 1 |a Kravchuk  |b K. S.  |g Konstantin Sergeevich 
701 1 |a Prymak  |b O.  |g Oleg 
701 1 |a Epple  |b M.  |g Mattias 
701 1 |a Buck  |b V.  |g Volker 
701 1 |a Surmenev  |b R. A.  |c physicist  |c Associate Professor of Tomsk Polytechnic University, Senior researcher, Candidate of physical and mathematical sciences  |f 1982-  |g Roman Anatolievich  |3 (RuTPU)RU\TPU\pers\31885  |9 15957 
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