E. A. Sulyanova, B. P. Sobolev, V. I. Nikolaichik, A. S. Avilov
{"title":"基于x射线和电子衍射数据的\\(\\alpha {\\text{-N}}{{{\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\text{F}}}_{{2 + 2x}}}\\) (R = Dy-Lu, Y)缺陷晶体结构ⅱ:α-Na0.4R0.6F2.2 (R = Ho-Lu, Y)纳米晶体的缺陷结构","authors":"E. A. Sulyanova, B. P. Sobolev, V. I. Nikolaichik, A. S. Avilov","doi":"10.1134/S1063774524602132","DOIUrl":null,"url":null,"abstract":"<p>The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> crystals (<i>R</i> = Ho–Lu, Y) have been studied by X-ray diffraction analysis at 293 and 85 K. A unified cluster model of nanostructured crystals with a fluorite-type structure, based on the polymorphism of K<i>R</i><sub>3</sub>F<sub>10</sub> (<i>R</i> = Er, Yb), was used to model their defect structure. The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> matrix component contains Na<sup>+</sup> and <i>R</i><sup>3+</sup> ions in a ratio of 1 : 1. Part of the matrix anions are shifted from the 8<i>c</i> to 32<i>f</i> site (sp. gr. <span>\\(Fm\\bar {3}m\\)</span>). Excess <i>R</i><sup>3+</sup> cations form, jointly with Na<sup>+</sup>, octa-cubic clusters with cores in the form of cuboctahedra {F<sub>12</sub>}, consisting of interstitial anions at the 48<i>i</i> site. The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> cluster component is formed by octa-cubic clusters of type <i>i</i>. The electron diffraction study showed that the clusters are shaped as plates about 5 nm thick with superstructural ordering. Their structural model based on the K<sub>0.265</sub>Gd<sub>0.735</sub>F<sub>2.47</sub> structure was proposed. Experimental confirmation of the affiliation of <span>\\(\\alpha {\\text{-N}}{{{\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\text{F}}}_{{2 + 2x}}}\\)</span> to nanostructured crystals was obtained for the first time by electron diffraction. When temperature decreases from 293 to 85 K, the type of the cluster component of the defect α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> structure with <i>R</i> = Ho–Lu, Y does not change. At 293 K, the boundary of the change in the defect structure type in the <span>\\(\\alpha {\\text{-N}}{{{\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\text{F}}}_{{2 + 2x}}}\\)</span> series is located between <i>R</i> = Dy (<i>Z</i> = 66) and Ho (<i>Z</i> = 67). With a decrease in temperature from 293 to 85 K the position of the boundary does not change.</p>","PeriodicalId":527,"journal":{"name":"Crystallography Reports","volume":"69 6","pages":"804 - 818"},"PeriodicalIF":0.6000,"publicationDate":"2025-02-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Defect Crystal Structure of \\\\(\\\\alpha {\\\\text{-N}}{{{\\\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\\\text{F}}}_{{2 + 2x}}}\\\\) (R = Dy–Lu, Y) According to X-ray and Electron Diffraction Data. II: Defect Structure of the α-Na0.4R0.6F2.2 (R = Ho–Lu, Y) Nanostructured Crystals\",\"authors\":\"E. A. Sulyanova, B. P. Sobolev, V. I. Nikolaichik, A. S. Avilov\",\"doi\":\"10.1134/S1063774524602132\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> crystals (<i>R</i> = Ho–Lu, Y) have been studied by X-ray diffraction analysis at 293 and 85 K. A unified cluster model of nanostructured crystals with a fluorite-type structure, based on the polymorphism of K<i>R</i><sub>3</sub>F<sub>10</sub> (<i>R</i> = Er, Yb), was used to model their defect structure. The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> matrix component contains Na<sup>+</sup> and <i>R</i><sup>3+</sup> ions in a ratio of 1 : 1. Part of the matrix anions are shifted from the 8<i>c</i> to 32<i>f</i> site (sp. gr. <span>\\\\(Fm\\\\bar {3}m\\\\)</span>). Excess <i>R</i><sup>3+</sup> cations form, jointly with Na<sup>+</sup>, octa-cubic clusters with cores in the form of cuboctahedra {F<sub>12</sub>}, consisting of interstitial anions at the 48<i>i</i> site. The α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> cluster component is formed by octa-cubic clusters of type <i>i</i>. The electron diffraction study showed that the clusters are shaped as plates about 5 nm thick with superstructural ordering. Their structural model based on the K<sub>0.265</sub>Gd<sub>0.735</sub>F<sub>2.47</sub> structure was proposed. Experimental confirmation of the affiliation of <span>\\\\(\\\\alpha {\\\\text{-N}}{{{\\\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\\\text{F}}}_{{2 + 2x}}}\\\\)</span> to nanostructured crystals was obtained for the first time by electron diffraction. When temperature decreases from 293 to 85 K, the type of the cluster component of the defect α-Na<sub>0.4</sub><i>R</i><sub>0.6</sub>F<sub>2.2</sub> structure with <i>R</i> = Ho–Lu, Y does not change. At 293 K, the boundary of the change in the defect structure type in the <span>\\\\(\\\\alpha {\\\\text{-N}}{{{\\\\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\\\\text{F}}}_{{2 + 2x}}}\\\\)</span> series is located between <i>R</i> = Dy (<i>Z</i> = 66) and Ho (<i>Z</i> = 67). With a decrease in temperature from 293 to 85 K the position of the boundary does not change.</p>\",\"PeriodicalId\":527,\"journal\":{\"name\":\"Crystallography Reports\",\"volume\":\"69 6\",\"pages\":\"804 - 818\"},\"PeriodicalIF\":0.6000,\"publicationDate\":\"2025-02-16\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Crystallography Reports\",\"FirstCategoryId\":\"88\",\"ListUrlMain\":\"https://link.springer.com/article/10.1134/S1063774524602132\",\"RegionNum\":4,\"RegionCategory\":\"材料科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q4\",\"JCRName\":\"CRYSTALLOGRAPHY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Crystallography Reports","FirstCategoryId":"88","ListUrlMain":"https://link.springer.com/article/10.1134/S1063774524602132","RegionNum":4,"RegionCategory":"材料科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"CRYSTALLOGRAPHY","Score":null,"Total":0}
Defect Crystal Structure of \(\alpha {\text{-N}}{{{\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\text{F}}}_{{2 + 2x}}}\) (R = Dy–Lu, Y) According to X-ray and Electron Diffraction Data. II: Defect Structure of the α-Na0.4R0.6F2.2 (R = Ho–Lu, Y) Nanostructured Crystals
The α-Na0.4R0.6F2.2 crystals (R = Ho–Lu, Y) have been studied by X-ray diffraction analysis at 293 and 85 K. A unified cluster model of nanostructured crystals with a fluorite-type structure, based on the polymorphism of KR3F10 (R = Er, Yb), was used to model their defect structure. The α-Na0.4R0.6F2.2 matrix component contains Na+ and R3+ ions in a ratio of 1 : 1. Part of the matrix anions are shifted from the 8c to 32f site (sp. gr. \(Fm\bar {3}m\)). Excess R3+ cations form, jointly with Na+, octa-cubic clusters with cores in the form of cuboctahedra {F12}, consisting of interstitial anions at the 48i site. The α-Na0.4R0.6F2.2 cluster component is formed by octa-cubic clusters of type i. The electron diffraction study showed that the clusters are shaped as plates about 5 nm thick with superstructural ordering. Their structural model based on the K0.265Gd0.735F2.47 structure was proposed. Experimental confirmation of the affiliation of \(\alpha {\text{-N}}{{{\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\text{F}}}_{{2 + 2x}}}\) to nanostructured crystals was obtained for the first time by electron diffraction. When temperature decreases from 293 to 85 K, the type of the cluster component of the defect α-Na0.4R0.6F2.2 structure with R = Ho–Lu, Y does not change. At 293 K, the boundary of the change in the defect structure type in the \(\alpha {\text{-N}}{{{\text{a}}}_{{0.5-x}}}{{R}_{{0.5 + x}}}{{{\text{F}}}_{{2 + 2x}}}\) series is located between R = Dy (Z = 66) and Ho (Z = 67). With a decrease in temperature from 293 to 85 K the position of the boundary does not change.
期刊介绍:
Crystallography Reports is a journal that publishes original articles short communications, and reviews on various aspects of crystallography: diffraction and scattering of X-rays, electrons, and neutrons, determination of crystal structure of inorganic and organic substances, including proteins and other biological substances; UV-VIS and IR spectroscopy; growth, imperfect structure and physical properties of crystals; thin films, liquid crystals, nanomaterials, partially disordered systems, and the methods of studies.