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In-situ Synchrotron...
In-situ Synchrotron X-ray Diffraction Analysis of the Setting Process of Brushite Cement: Reaction and Crystal Growth
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- Luo, Jun (författare)
- Uppsala University,Uppsala universitet,Tillämpad materialvetenskap,Materials in Medicine Group
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- Martinez, Francisco (författare)
- Lund University,Lunds universitet,MAX IV-laboratoriet,MAX IV Laboratory,Institut Laue Langevin,University of Zaragoza
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- Balmes, Olivier (författare)
- Lund University,Lunds universitet,MAX IV-laboratoriet,MAX IV Laboratory
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- Yang, Jiaojiao (författare)
- Uppsala University,Uppsala universitet,Nanoteknologi och funktionella material,Nanotechnology and Functional Materials
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- Persson, Cecilia (författare)
- Uppsala University,Uppsala universitet,Tillämpad materialvetenskap,Materials in Medicine Group
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- Engqvist, Håkan (författare)
- Uppsala University,Uppsala universitet,Tillämpad materialvetenskap,Materials in Medicine Group
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- Xia, Wei (författare)
- Uppsala University,Uppsala universitet,Tillämpad materialvetenskap,Materials in Medicine Group
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(creator_code:org_t)
- 2017-10-06
- 2017
- Engelska.
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Ingår i: ACS Applied Materials and Interfaces. - : American Chemical Society (ACS). - 1944-8244 .- 1944-8252. ; 9:41, s. 36392-36399
- Relaterad länk:
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http://dx.doi.org/10...
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https://urn.kb.se/re...
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https://doi.org/10.1...
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https://lup.lub.lu.s...
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Abstract
Ämnesord
Stäng
- Brushite cements are fast self-setting materials that can be used as bone substitute materials. Although tracing their fast setting process is a challenge, it is important for the understanding of the same, which in turn is important for the material’s further development and use in the clinics. In this study, the setting rate, phase formation, and crystal growth of brushite cements were quantitatively studied by in situ synchrotron powder X-ray diffraction (SXRD) on a time scale of seconds. The influence of reactant ratios and a retardant (citric acid) on the setting reaction were analyzed. To complement the in situ investigations, scanning electron microscopy was carried out for ex situ morphological evolution of crystals. The initial reaction followed a four-step process, including a fast nucleation induction period, nucleation, crystal growth, and completion of the setting. The brushite crystal size grew up to the micro scale within 1 min, and the brushite content increased linearly after the nucleation until all monocalcium phosphate monohydrate (MCPM; Ca(H2PO4)2·H2O) had dissolved within minutes, followed by a slow increase until the end of the monitoring. By adjusting the MCPM to the β-tricalcium phosphate (β-TCP, β-Ca3(PO4)2) ratio in the starting powders, the brushite/monetite ratio in the cements could be modified. In the presence of citric acid, the formation of brushite nuclei was not significantly retarded, whereas the increase in brushite content and the growth of crystal size were effectively hindered. The amount of monetite also increased by adding citric acid. This is the first time that the brushite setting process has been characterized in the first seconds and minutes of the reaction by SXRD.
Ämnesord
- TEKNIK OCH TEKNOLOGIER -- Medicinteknik -- Medicinsk material- och protesteknik (hsv//swe)
- ENGINEERING AND TECHNOLOGY -- Medical Engineering -- Medical Materials (hsv//eng)
- MEDICIN OCH HÄLSOVETENSKAP -- Medicinsk bioteknologi -- Biomaterialvetenskap (hsv//swe)
- MEDICAL AND HEALTH SCIENCES -- Medical Biotechnology -- Biomaterials Science (hsv//eng)
Nyckelord
- synchrotron X-ray diffraction
- setting reaction process
- brushite cement
- crystal size
- citric acid
- MCPM/β-TCP ratio
- Teknisk fysik med inriktning mot materialvetenskap
- Engineering Science with specialization in Materials Science
- brushite cement
- citric acid
- crystal size
- MCPM/β-TCP ratio
- setting reaction process
- synchrotron X-ray diffraction
Publikations- och innehållstyp
- ref (ämneskategori)
- art (ämneskategori)
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