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首页> 外文期刊>Journal of magnetism and magnetic materials >Conventional, pulsed and high-field electron paramagnetic resonance for studying metal impurities in calcium phosphates of biogenic and synthetic origins
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Conventional, pulsed and high-field electron paramagnetic resonance for studying metal impurities in calcium phosphates of biogenic and synthetic origins

机译:常规,脉冲和高场电子顺磁共振研究生物和合成来源的磷酸钙中的金属杂质

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摘要

Calcium phosphates (CaP) based materials are widely recognized as the most suitable matrix for bone tissue engineering. The cationic and anionic substitutions of CaP structure by the elements and groups of biological importance seem to be the effective ways to improve the properties of CaP-based substances to achieve the material's desired parameters. Various analytical and biochemical methods are used for controlling their chemical content, structure, morphology, etc. Unfortunately, magnetic resonance techniques are usually not even considered as necessary tools for CaP inspection.Some aspects of application of the commercially realized electron paramagnetic resonance (EPR) approaches for characterization of CaP powders and ceramics (including the nanosized materials) such as hydroxyapatite and tricalcium phosphates of biogenic and synthetic origins containing intrinsic impurities or intentional dopants are demonstrated. Among them (1) conventional approaches; (2) high-frequency approaches - for measuring small amount of material; (3) pulsed methods - to study size effects, effects of the co-doping by different sorts of ions, to determine the location of paramagnetic centers, etc. The key features and advantages of the EPR techniques for CaP based materials characterization that could complement the data obtained with the recognized analytical methods are stressed. (C) 2018 Elsevier B.V. All rights reserved.
机译:磷酸钙(CaP)基材料被广泛认为是骨组织工程最合适的基质。用具有生物重要性的元素和基团取代CaP结构的阳离子和阴离子似乎是改善基于CaP的物质特性以实现材料所需参数的有效方法。使用各种分析和生化方法来控制其化学含量,结构,形态等。不幸的是,磁共振技术通常甚至不被认为是CaP检测的必要工具。商业实现的电子顺磁共振(EPR)的某些应用领域演示了表征CaP粉末和陶瓷(包括纳米材料)(例如羟基磷灰石和磷酸三钙)的方法,这些方法的生物或合成来源均含有内在杂质或故意掺杂。其中(1)常规方法; (2)高频方法-用于测量少量物料; (3)脉冲方法-研究尺寸效应,不同种类的离子共掺杂的效应,确定顺磁中心的位置等。EPR技术对于可基于CaP的材料表征的关键特征和优势强调使用公认的分析方法获得的数据。 (C)2018 Elsevier B.V.保留所有权利。

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