首页> 外文OA文献 >Comparing Methods for Calculating Nano Crystal Size of Natural Hydroxyapatite Using X-Ray Diffraction
【2h】

Comparing Methods for Calculating Nano Crystal Size of Natural Hydroxyapatite Using X-Ray Diffraction

机译:用X射线衍射计算天然羟基磷灰石纳米晶体尺寸的比较方法

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

We report on a comparison of methods based on XRD patterns for calculating crystal size. In this case, XRD peaks were extracted from hydroxyapatite obtained from cow, pig, and chicken bones. Hydroxyapatite was synthesized through the thermal treatment of natural bones at 950 °C. XRD patterns were selected by adjustment of X-Pert software for each method and for calculating the size of the crystals. Methods consisted of Scherrer (three models), Monshi–Scherrer, three models of Williamson–Hall (namely the Uniform Deformation Model (UDM), the Uniform Stress Deformation Model (USDM), and the Uniform Deformation Energy Density Model (UDEDM)), Halder–Wanger (H-W), and the Size Strain Plot Method (SSP). These methods have been used and compared together. The sizes of crystallites obtained by the XRD patterns in each method for hydroxyapatite from cow, pig, and chicken were 1371, 457, and 196 nm in the Scherrer method when considering all of the available peaks together (straight line model). A new model (straight line passing the origin) gave 60, 60, and 53 nm, which shows much improvement. The average model gave 56, 58, and 52 nm, for each of the three approaches, respectively, for cow, pig, and chicken. The Monshi–Scherrer method gave 60, 60, and 57 nm. Values of 56, 62, and 65 nm were given by the UDM method. The values calculated by the USDM method were 60, 62, and 62 nm. The values of 62, 62, and 65 nm were given by the UDEDM method for cow, pig, and chicken, respectively. Furthermore, the crystal size value was 4 nm for all samples in the H-W method. Values were also calculated as 43, 62, and 57 nm in the SSP method for cow, pig, and chicken tandemly. According to the comparison of values in each method, the Scherrer method (straight line model) for considering all peaks led to unreasonable values. Nevertheless, other values were in the acceptable range, similar to the reported values in the literature. Experimental analyses, such as specific surface area by gas adsorption (Brunauer–Emmett–Teller (BET)) and Transmission Electron Microscopy (TEM), were utilized. In the final comparison, parameters of accuracy, ease of calculations, having a check point for the researcher, and difference between the obtained values and experimental analysis by BET and TEM were considered. The Monshi–Scherrer method provided ease of calculation and a decrease in errors by applying least squares to the linear plot. There is a check point for this line that the slope must not be far from one. Then, the intercept gives the most accurate crystal size. In this study, the setup of values for BET (56, 52, and 49 nm) was also similar to the Monshi–Scherrer method and the use of it in research studies of nanotechnology is advised.
机译:我们报告了基于XRD图案计算晶体尺寸的方法的比较。在这种情况下,从牛,猪和鸡肉骨骼获得的羟基磷灰石中提取XRD峰。通过950℃的天然骨骼的热处理合成羟基磷灰石。通过针对每种方法调整X-Pert软件并计算晶体的尺寸来选择XRD图案。方法包括Scherrer(三种型号),蒙沙Scherrer,三种模型的威廉姆森 - 霍尔(即均匀变形模型(UDM),均匀应力变形模型(USDM)和均匀变形能量密度模型(Udedm)), Halder-Wanger(HW)和尺寸应变绘图方法(SSP)。这些方法已使用并将其进行比较。当将所有可用的峰值在一起(直线模型)时,通过牛,猪和鸡的每种方法中的XRD图案中的XRD图案中获得的微晶在牛,猪和鸡的每种方法中获得的尺寸为1371,457和196nm。一种新的模型(通过原点的直线)给出了60,60和53nm,显示出很大的改进。对于牛,猪和鸡,平均模型分别为三种方法中的每一种方法给出了56,58和52nm。 Monshi-Scherrer方法给出了60,60和57nm。通过UDM方法给出56,62和65nm的值。通过USDM方法计算的值为60,62和62nm。通过牛,猪和鸡的Udedm方法给出62,62和65nm的值。此外,对于H-W方法的所有样品,晶体尺寸值为4nm。在牛,猪和鸡肉的SSP方法中也计算为43,62和57nm。根据每种方法中的值的比较,Scherrer方法(直线模型)考虑所有峰值导致不合理的值。然而,其他值在可接受的范围内,类似于文献中报道的值。使用天然气吸附(Brunauer-Emmett-Teller(Bet))和透射电子显微镜(TEM)等实验分析。在最终的比较中,考虑了准确性,易于计算的参数,具有研究人员的检查点,并考虑了所获得的值与测试和试验分析之间的差异。 Monshi-Scherrer方法提供了易于计算的容易性,并且通过向线性图施加最小量角来减小误差。这条线有一个检查点,斜率不得远离一个。然后,截距给出了最精确的晶粒大小。在该研究中,BET(56,52和49mm)的值的设置也类似于孟奇 - Scherrer方法,并建议使用它在纳米技术的研究研究中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号