Wong-Ng W, Siegrist T, DeTitta G T, Finger L W, Evans H T, Gabe E J, Enright G D, Armstrong J T, Levenson M, Cook L P, Hubbard C R
National Institute of Standards and Technology, Gaithersburg, MD 20899-0001.
Inorganic 2, Lund University, Sweden.
J Res Natl Inst Stand Technol. 2001 Dec 1;106(6):1071-94. doi: 10.6028/jres.106.058. Print 2001 Nov-Dec.
An international project was successfully completed which involved two major undertakings: (1) a round-robin to demonstrate the viability of the selected standard and (2) the certification of the lattice parameters of the SRM 1990, a Standard Reference Material(®) for single crystal diffractometer alignment. This SRM is a set of ≈3500 units of Cr-doped Al2O3, or ruby spheres [(0.420.011 mole fraction % Cr (expanded uncertainty)]. The round-robin consisted of determination of lattice parameters of a pair of crystals: the ruby sphere as a standard, and a zeolite reference to serve as an unknown. Fifty pairs of crystals were dispatched from Hauptman-Woodward Medical Research Institute to volunteers in x-ray laboratories world-wide. A total of 45 sets of data was received from 32 laboratories. The mean unit cell parameters of the ruby spheres was found to be a=4.7608 ű0.0062 Å, and c=12.9979 ű0.020 Å (95 % intervals of the laboratory means). The source of errors of outlier data was identified. The SRM project involved the certification of lattice parameters using four well-aligned single crystal diffractometers at (Bell Laboratories) Lucent Technologies and at NRC of Canada (39 ruby spheres), the quantification of the Cr content using a combined microprobe and SEM/EDS technique, and the evaluation of the mosaicity of the ruby spheres using a double-crystal spectrometry method. A confirmation of the lattice parameters was also conducted using a Guinier-Hägg camera. Systematic corrections of thermal expansion and refraction corrections were applied. These rubies- are rhombohedral, with space group [Formula: see text]. The certified mean unit cell parameters are a=4.76080±0.00029 Å, and c=12.99568 ű0.00087 Å (expanded uncertainty). These certified lattice parameters fall well within the results of those obtained from the international round-robin study. The Guinier-Hägg transmission measurements on five samples of powdered rubies (a=4.7610 ű0.0013 Å, and c = 12.9954 ű0.0034 Å) agreed well with the values obtained from the single crystal spheres.
一个国际项目成功完成,该项目涉及两项主要工作:(1)通过循环检验来证明所选标准的可行性;(2)对SRM 1990(一种用于单晶衍射仪校准的标准参考物质(®))的晶格参数进行认证。该标准参考物质是一组约3500个单位的掺铬Al2O3,即红宝石球[(0.42±0.011摩尔分数%铬(扩展不确定度))]。循环检验包括测定一对晶体的晶格参数:以红宝石球作为标准,以一种沸石参考物作为未知物。50对晶体从豪普特曼 - 伍德沃德医学研究所发送给全球各地X射线实验室的志愿者。共收到来自32个实验室的45组数据。发现红宝石球的平均晶胞参数为a = 4.7608 ű0.0062 Å,c = 12.9979 ű0.020 Å(实验室平均值的95%区间)。识别出异常值数据的误差来源。该标准参考物质项目涉及使用朗讯科技公司贝尔实验室和加拿大国家研究委员会的四台校准良好的单晶衍射仪对晶格参数进行认证(39个红宝石球),使用组合微探针和扫描电子显微镜/能谱仪技术对铬含量进行定量,以及使用双晶光谱法对红宝石球的镶嵌性进行评估。还使用吉尼尔 - 哈格相机对晶格参数进行了确认。应用了热膨胀和折射校正的系统校正。这些红宝石为菱面体,空间群为[公式:见原文]。认证的平均晶胞参数为a = 4.76080±0.00029 Å,c = 12.99568 ű0.00087 Å(扩展不确定度)。这些认证的晶格参数完全落在国际循环研究所得结果范围内。对五个粉末状红宝石样品的吉尼尔 - 哈格透射测量结果(a = 4.7610 ű0.0013 Å,c = 12.9954 ű0.0034 Å)与从单晶球获得的值吻合良好。