2006
DOI: 10.1107/s1600536806042905
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High-temperature form of neodymium orthoborate, NdBO3

Abstract: International audienceThe framework of the high-temperature modification of NdBO3 is built up from NdO8 dodecahedra sharing edges and BO3 groups. The NdO8 polyhedra form corrugated sheets approximately parallel to the (111) plane and the borate groups are arranged in rows running parallel to the [011] direction. The Nd—O distances range from 2.315 (3) to 2.697 (4) A ° and the B—O distances from 1.346 (6) to 1.407 (6) A ° . The title structure is isotypic with triclinic EuBO3

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Cited by 10 publications
(12 citation statements)
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“…Each O atom is bonded to one B atom and coordinated with either two or three Nd atoms, as shown in Figure 7c. 43 Because the Nd− O bond is ionic, the negative charge of the nonbridging O on the BO 3 3− group is compensated for by two or three Nd 3+ ions. The similarity in T(r) between the glasses and ν-NdBO 3 structure indicates strongly that the atomic arrangement around R 3+ in ν-NdBO 3 is also realized in x = 50 glasses.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
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“…Each O atom is bonded to one B atom and coordinated with either two or three Nd atoms, as shown in Figure 7c. 43 Because the Nd− O bond is ionic, the negative charge of the nonbridging O on the BO 3 3− group is compensated for by two or three Nd 3+ ions. The similarity in T(r) between the glasses and ν-NdBO 3 structure indicates strongly that the atomic arrangement around R 3+ in ν-NdBO 3 is also realized in x = 50 glasses.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…The vaterite-type structure is very different from the structure of x = 50 glass in terms of the different BO n units. Phase transitions at high temperatures were reported to occur in these three types of crystalline phases. ,− The aragonite-type phase (R = La–Nd) undergoes a high-temperature phase transition with a slight modification of atomic arrangements while keeping BO 3 3– groups, although the high-temperature forms of NdBO 3 (ν-NdBO 3 ) differ from those of LaBO 3 (H-LaBO 3 ). The high-temperature phases of R = Sm and Eu have the same structures as that of ν-NdBO 3 .…”
Section: Resultsmentioning
confidence: 99%
“…Наличие высокотемпературных фаз REBO 3 (RE = La, Nd, Sm and Eu), имеющих низкую симметрию, отметил еще в 1961 г. E.M. Levin с соавторами [30]. Позже и другие авторы [31][32][33][34][35][36][37][38][39] получали триклинные модификации редкоземельных ортоборатов, используя различные методы синтеза. Особенностью методов синтеза в перечисленных работах является использование очень высоких температур (порядка 1500−1600 • C), при которых собственно и происходит образование термодинамически равновесной триклинной модификации редкоземельных ортоборатов.…”
Section: Introductionunclassified
“…Особенностью методов синтеза в перечисленных работах является использование очень высоких температур (порядка 1500−1600 • C), при которых собственно и происходит образование термодинамически равновесной триклинной модификации редкоземельных ортоборатов. Более того, иногда для получения триклинной структуры было необходимо приложение дополнительного давления [34], или проводить кристаллизацию из расплава с последующим выделением отдельных монокристаллитов и проведением монокристального рентгеновского анализа для определения симметрии структуры [35][36][37].…”
Section: Introductionunclassified
“…Lantanit boratlar, kristal yapılarında hidroksil ve/veya su molekülü içerip içermemelerine göre de ikiye ayrılırlar. Literatürde yüksek bor oranından başlayarak düşük bor oranına doğru var olan mikro yapılı-susuz borat bileşikleri şunlardır; α/β LnB5O9 [4][5], Ln4B14O27 [6], α/β/γ/δ LnB3O6 [7,8,9,10], Ln4B10O21 [11], α/β Ln2B4O9 [12][13], Ln3B5O12 [14], Ln4B6O15 [15], π/μ/λ/β/υ/χ LnBO3 [16,17,18,19,20,21], H-LnBO3 [22], Ln8.66O8(BO3)2(B2O5) [23], Ln17.33O16(BO3)4(B2O5)2 [24], Ln3BO6 [17], Ln26O27(BO3)8 [25], Ln31O27(BO3)3(BO4)6 [26]. Kristal yapılarında su içeren mikro yapılı lantanit borat bileşikleri ise şunlardır; LnB9O13(OH)4.H2O, LnB8O11(OH)5, LnB6O9(OH)3 [27][28], LnB5O8(OH)2.1.5H2O [29], Ln2B6O10(OH)4 [30] ve Ln4B6O14(OH)12 [31].…”
Section: Introductionunclassified