• 제목/요약/키워드: Zeolite X

검색결과 335건 처리시간 0.026초

$Ca^{2+}$ 이온으로 완전히 치환된 제올라이트 X, $Ca_{46}-X$$Ca^{2+}$ 이온과 $K^+$ 이온으로 치환된 제올라이트 X, $Ca_{32}K_{28}-X$를 완전히 진공 탈수한 결정구조 (Crystal Structures of Fully Dehydrated $Ca^{2+}$-Exchanged Zeolite X, $Ca_{46}-X$, and $Ca^{2+}$ and $K^+$-Exchanged Zeolite X, $Ca_{32}K_{28}-X$)

  • 장세복;송승환;김양
    • 대한화학회지
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    • 제39권1호
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    • pp.7-13
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    • 1995
  • $Ca^{2+}$ 이온으로 완전히 치환된 제올라이트 $X(Ca_{46}Al_{92}Si_{100}O_{384})$$Ca^{2+}$ 이온과 $K^+$ 이온으로 치환된 제올라이트 $X(Ca_{46}Al_{92}Si_{100}O_{384})$$360^{\circ}C에서2{\times}10^{-6}$ Torr의 진공하에서 탈수한 구조를 $21^{\circ}C에서$ 입방공간군 Fd3을 사용하여 단결정 X-선 회절법으로 해석하고 구조를 정밀화하였다. 탈수한 $Ca_{46}-X$의 구조는 Full-matrix 최소자승법 정밀화 계산에서 $I>3\sigma(I)인$ 166개의 독립반사를 사용하여 최종오차인자를 R_1=0.096,\;R_2=0.068$까지 정밀화 계산하였고, $Ca_{32}K_{28}-X$의 구조는 130개의 독립반사를 사용하여 R_1=0.078,\;R_2=0.056$까지 정밀화시켰다. 탈수된 $Ca_{46}-X$에서 $Ca^{2+}$ 이온은 점유율이 높은 서로 다른 두개의 자리에 위치하고 있었다. 16개의 $Ca^{2+}$ 이온은 이중 6-산소고리(D6R)의 중심에 위치하였고(자리 I; $(Ca(1)-O(3)=2.51(2)\AA)$, 30개의 $Ca^{2+}$ 이온은 큰 동공쪽으로 약 0.44 $\AA$ 들어간 자리에 위치하고 있다(Ca(2)-O_(2)=2.24(2) $\AA$, $O(2)-Ca(2)-O(2)=119(1)^{\circ}).$ 탈수한 $Ca_{32}K_{28}-X$의 구조에서 모든 $Ca^{2+}$ 이온과 $K^+$ 이온은 4개의 서로 다른 결정학적 자리에 위치하고 있었다 : 16개의 $Ca^{2+}$ 이온은 D6R의 중심에 위치하였고, 다른 16개의 $Ca^{2+}$ 이온과 16개의 $K^+$ 이온은 큰 동공에 있는 자리 II에 각각 위치하고 있었다. 이러한 $Ca^{2+}$ 이온과 $K^+$ 이온은 O(2)의 평면에서 큰 동공쪽으로 약 0.56 $\AA$과 1.54 $\AA$ 들어간 자리에 각각 위치하고 있었다. $(Ca(2)-O(2)=2.29(2)\AA$, $O(2)-Ca(2)-O(2)=119(1)^{\circ}$, $K(1)-O(2)=2.59(2)\AA$, and $O(2)-K(1)-O(2)=99.2(8)^{\circ}).$ 12개의 $K^+$ 이온은 큰 동공에 있는 자리 III에 위치하고 있었다. $(K(2)-O(4)=3.11(6)\AA$ and $O(1)-K(2)-O(1)=128(2)^{\circ}).$

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Synthesis and Crystal Structure of Lead Iodide in the Sodalite Cavities of Zeolite A (LTA)

  • Kim, Seok-Han;Lim, Woo-Taik;Kim, Ghyung-Hwa;Lee, Heung-Soo;Heo, Nam-Ho
    • Bulletin of the Korean Chemical Society
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    • 제27권5호
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    • pp.679-686
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    • 2006
  • The positions of $PbI _2$ molecule synthesized into the molecular-dimensioned cavities of $\mid K_6 (Pb _4I_2)(PbI_2) _{0.67}-(H_2O)_2\mid [Si _{12}Al _{12}O _{48}]$-LTA have been determined. A single crystal of $\mid Pb _6\mid [Si _{12}Al _{12}O _{48}]$-LTA, prepared by the dynamic ion-exchange of $\mid Na _{12}\mid [Si _{12}Al _{12}O _{48}]$-LTA with aqueous 0.05 M $Pb _(NO _3)_2$ and washed with deionized water, was placed in a stream of flowing aqueous 0.05 M KI at 294 K for three days. The resulting crystal structure of the product $( \mid K_6 (Pb _4I_2)(PbI_2) _{0.67}(H_2O)_2\mid [Si _{12}Al _{12}O _{48}]$-LTA, a = 12.353(1) $\AA$) was determined at 294 K by single-crystal X-ray diffraction in the space group Pm3 m. It was refined with all measured reflections to the final error index $R_1$ = 0.062 for 623 reflections which $F_o$ > 4$\sigma$($F_o$). 4.67 $Pb ^{2+}$ and six $K^+$ ions per unit cell are found at three crystallographically distinct positions: 3.67 $Pb ^{2+}$ and three $K^+$ ions on the 3-fold axes opposite six-rings in the large cavity, three $K^+$ ions off the plane of the eight-rings, and the remaining one $Pb ^{2+}$ ion lies opposite four-ring in the large cavity. 0.67 $Pb ^{2+}$ ions and 1.34 $I^-$ ions per unit cell are found in the sodalite units, indicating the formation of a $PbI _2$ molecule in 67% of the sodalite units. Each $PbI _2$ (Pb-I = 3.392(7) $\AA$) is held in place by the coordination of its one $Pb ^{2+}$ ion to the zeolite framework (a $Pb ^{2+}$ cation is 0.74 $\AA$ from a six-ring oxygens) and by the coordination of its two $I^-$ ions to $K^+$ ions through six-rings (I-K = 3.63(4) $\AA$). Two additional $I^-$ ions per unit cell are found opposite a four-ring in the large cavity and form $Pb _2K_2I^{5+}$ and $Pb _2K_2I^{3+}$ moieties, respectively, and two water molecules per unit cell are also found on the 3-fold axes in the large cavity.

Single-crystal Structure of Fully Dehydrated and Largely NH4+-exchanged Zeolite Y (FAU, Si/Al = 1.70), │(NH4)60Na11│[Si121Al71O384]-FAU

  • Seo, Sung-Man;Kim, Ghyung-Hwa;Kim, Young-Hun;Wang, Lian-Zhou;Lu, Gao-Qing;Lim, Woo-Taik
    • Bulletin of the Korean Chemical Society
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    • 제30권3호
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    • pp.543-550
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    • 2009
  • The single-crystal structure of largely ammonium-exchanged zeolite Y dehydrated at room temperature (293 K) and 1 ${\times}\;10^{-6}$ Torr. has been determined using synchrotron X-radiation in the cubic space group $Fd\overline{3}m\;(a=24.9639(2)\AA)$ at 294 K. The structure was refined to the final error index $R_1$ = 0.0429 with 926 reflections where $F_o>4\sigma(F_o)$; the composition (best integers) was identified as |$(NH_4)_{60}Na_{11}$|[$Si_{121}Al_{71}O_{384}$]-FAU. The 11 $Na^{+}$ ions per unit cell were found at three different crystallographic sites and 60 ${NH_4}^{+}$ ions were distributed over three sites. The 3 $Na^{+}$ ions were located at site I, the center of the hexagonal prism ($Na-O\;=\;2.842(5)\;\AA\;and\;O-Na-O\;=\;85.98(12)^{\circ}$). The 4 $Na^{+}$ and 22 ${NH_4}^{+}$ ions were found at site I' in the sodalite cavity opposite the double 6-rings, respectively ($Na-O\;=\;2.53(13)\;\AA,\;O-Na-O\;=\;99.9(7)^{\circ},\;N-O\;=\;2.762(11)\;\AA,\;and\;O-N-O =\;89.1(5)^{\circ}$). About 4 $Na^{+}$ ions occupied site II ($(Na-O\;=\;2.40(4)\;\AA\;and\;O-Na-O\;=\;108.9(3)^{\circ}$) and 29 ${NH_4}^{+}$ ions occupy site II ($N-O\;=\;2.824(9)\;\AA\;and\;O-N-O\;=\;87.3(3)^{\circ}$) opposite to the single 6-rings in the supercage. The remaining 9 ${NH_4}^{+}$ ions were distributed over site III' ($N-O\;=\;2.55(3),\;2.725(13)\;\AA\;and\;O-N-O\;=\;94.1(13),\;62.16(15),\;155.7(14)^{\circ}$).

세라믹섬유지를 사용한 허니컴 흡착소자 제조 및 VOC 흡착특성 (Fabrication of Honeycomb Adsorbents by Using the Ceramic Paper and Adsorption Characteristics of VOC)

  • 유윤종;조철희;김홍수;안영수;한문희;장건익
    • 한국세라믹학회지
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    • 제39권11호
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    • pp.1035-1041
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    • 2002
  • 세라믹섬유지에 VOC 흡착특성이 우수한 제올라이트-Y와 ZSM-5를 담지시키기 위하여 바인더로 사용된 실리카 졸의 첨가량 변화에 따른 흡착제의 표면고착특성을 고찰하였다. 세라믹섬유지에 담지된 제올라이트는 입자가 고르게 분산되어 31 wt% 정도가 고착되었으며, X-ray 회절분석결과 담지 후 열처리와 바인더의 사용에도 불구하고 제올라이트는 원래의 결정구조를 유지하였다. 담지된 제올라이트의 비표면적 감소는 메조포어의 감소에 따른 것으로, VOC 흡착에 가장 유효한 $20{\AA}$ 미만의 마이크로포어에는 영향을 미치지 않음을 알 수 있었다. 세라믹섬유지로 제조한 직경 10cm, 길이 40cm의 허니컴에 제올라이트를 담지시켜 톨루엔, MEK, Cyclohexanone에 대한 흡착실험결과 흡착제거효율이 모두 97% 이상으로 나타났으며, 회전식 흡착농축장치에 적용할 경우 VOC 농도 300 ppmv의 오염공기를 $42 Nm^3/h$ 정도 연속적으로 처리할 수 있는 흡착특성을 나타내었다.

Fe-TNU-9 제올라이트 상에서 아산화질소의 분해반응 속도론 (Kinetics of N2O Decomposition over Fe-TNU-9 Zeolite)

  • 박정현;전성희;위엔반과;신채호
    • 공업화학
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    • 제20권4호
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    • pp.453-458
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    • 2009
  • Fe의 함량을 0.5~3.3 wt%의 범위에서 이온 교환하여 제조한 Fe-TNU-9 제올라이트 촉매상에서 $N_2O$ 농도를 2000~8500 ppm, 반응온도를 $300{\sim}550^{\circ}C$ 범위 내에서 $N_2O$ 직접분해반응을 수행하였다.제조된 촉매는 X-선 회절분석, 질소흡착, 주사전자현미경 등으로 특성분석을 수행하였다. 최적 Fe 함량은 2.7 wt%로 그 이상의 함량에 있어 Fe 함량은 $N_2O$ 직접분해반응에 큰 영향을 미치지 않았다. 이온교환 후에 TNU-9의 XRD 상으로는 안정된 상태를 유지하였지만 0.01 M Fe 용액 하에서 이온 교환한 3.1 wt% Fe-TNU-9 제올라이트는 H-TNU-9에 비해 최대 60%까지의 결정화도가 감소하였다. 이러한 결정화도의 감소는 비표면적 및 기공부피와 연관질 수 있지만 감소정도는 약 10% 정도로 결정화도 감소와 비교하면 영향은 크지 않았다. 멱차수법을 이용한$N_2O$ 분해반응에 있어$N_2O$ 부분 반응차수는 $420^{\circ}C$에서 0.69, $464^{\circ}C$에서 0.97차까지 변화하였다. 활성화 에너지는$N_2O$의 농도가 증가하면 같은 경향으로 증가하였고, 34~43 kcal/mol 범위 내에서 넓게 분포하였다.

Kr Atoms and Their Chlustering in Zeolite A

  • 임우택;장장환;정기진;허남호
    • Bulletin of the Korean Chemical Society
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    • 제22권9호
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    • pp.1023-1029
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    • 2001
  • The positions of Kr atoms encapsulated in the molecular-dimensioned cavities of fully dehydrated zeolite A of unit-cell composition Cs3Na8HSi12Al12O48 (Cs3-A) have been determined. Cs3-A was exposed to 1025 atm of krypton gas at 400 $^{\circ}C$ for four days, followed by cooling at pressure to encapsulate Kr atoms. The resulting crystal structure of Cs3-A(6Kr) (a = $12.247(2)\AA$, R1 = 0.078, and R2 = 0.085) has been determined by single-crystal X-ray diffraction techniques in the cubic space group Pm3m at $21(1)^{\circ}C$ and 1 atm. In the crystal structure of Cs3-A(6Kr), six Kr atoms per unit cell are distributed over three crystallographically distinct positions: each unit cell contains one Kr atom at Kr(1) on a threefold axis in the sodalite unit, three at Kr(2) opposite four-rings in the large cavity, and two at Kr(3) on threefold axes in the large cavity. Relatively strong interactions of Kr atoms at Kr(1) and Kr(3) with Na+ ions of six-rings are observed: Na-Kr(1) = 3.6(1) $\AA$ and Na-Kr(3) = $3.08(5)\AA.$ In each sodalite unit, one Kr atom at Kr(1) was displaced $0.74\AA$ from the center of the sodalite unit toward a Na+ ion, where it can be polarized by the electrostatic field of the zeolite, avoiding the center of the sodalite unit which by symmetry has no electrostatic field. In each large cavity, five Kr atoms were found, forming a trigonal-bipyramid arrangement with three Kr(2) atoms at equatorial positions and two Kr(3) atoms at axial positions. With various reasonable distances and angles, the existence of Kr5 cluster was proposed (Kr(2)-Kr(3) = $4.78(6)\AA$ and Kr(2)-Kr(2) = $5.94(7)\AA$, Kr(2)-Kr(3)-Kr(2) = 76.9(3), Kr(3)-Kr(2)-Kr(3) = 88(1), and Kr(2)-Kr(2)-Kr(2) = $60^{\circ}).$ These arrangements of the encapsulated Kr atoms in the large cavity are stabilized by alternating dipoles induced on Kr(2) by four-ring oxygens and Kr(3) by six-ring Na+ ions, respectively.

Crystallographic Studies of Dehydrated $Ag^{+}\;and\;K^{+}$ Exchanged Zeolite A Reacted with Alkali Metal Vapor

  • Yang Kim;Mi Suk Jeong;Karl Seff
    • Bulletin of the Korean Chemical Society
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    • 제14권5호
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    • pp.603-610
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    • 1993
  • The crystal structure of dehydrated $Ag_{5.6}K_{6.4}-A$, zeolite A ion-exchanged with $K^+\;and\;Ag^+$ as indicated and dehydrated at 360$^{\circ}$C, has been determined by single-crystal X-ray diffraction techniques. Also determined were the structures of the products of the reactions of this zeolite with 0.1 Torr of Cs vapor at 250$^{\circ}$C for 48 h and 72 h, and with 0.1 Torr of Rb vapor at 250$^{\circ}$C for 24 h. The structures were solved and refined in the cubic space group Pm3m at 21(l)$^{\circ}$C (a= 12.255(l) ${\AA}$ , 12.367(l) ${\AA}$, 12.350(l) ${\AA}$, and 12.263(l) ${\AA}$, respectively). Dehydrated $Ag_{5.6}K_{6.4}$-A was refined to the final error indices $R_1= 0.044\;and\;R_2=0.037$ with 202 reflections for which I>3${\sigma}$(I). The crystal structures of the reaction products were refined to $R_1=0.087\;and\;R_2= 0.089$ with 157 reflections, $R_1=0.080\;and\;R_2= 0.087$ with 161 reflections, and $R_1= 0.071\;and\;R_2=0.061$ with 88 reflections, respectively. In the structure of $Ag_{5.6}K_{6.4}-A,\;K^+$ ions block all 8-oxygen rings, and one reduced Ag atom is found per sodalite cavity. Also, ca. 4.6 $Ag^+ ions\;and\;3.4 K^+ ions$ are found at 6-ring sites in the large cavity. The crystal structures of the reaction products show that all $K^+$ and $Ag^+$ ions have been reduced, and that all K^+$ atoms have left the zeolite. Cs or Rb species are found at three different crystallographic sites: 3.0 $Cs^+\;or\;3.0Rb^+$ ions per unit cell occupy 8-ring centers, ca. 8.0 $Cs^+ ions\;or\;5.7 Rb^+$ ions, are found on threefold axes opposite 6-rings deep in the large cavity, and ca. 2.5 $Cs^+\;or\;2.3 Rb^+ ions are found on threefold axes in the sodalite unit. Also, 1 $Rb^+$ ion lies opposite a 4-ring. Silver atoms, corresponding to 75% or 40% occupancy of hexasilver clusters stabilized by coordination to $Cs^+\;or\;Rb^+$ ions, are found at the centers of the large cavities. In the crystal structures of dehydrated Ag_{5.6}K_{6.4}-A$ reacted with Cs vapor, excess Cs atoms are absorbed and these form (locally) cationic clusters such as $(Cs_4)3^+\;and\;(Cs_6)4^+$.

입상 인공제올라이트를 이용한 중금속 폐수 정화와 벼 유묘 생육장해 경감 (Effect of Artificial Granular Zeolite(AGZ) on Purification of Heavy Metals in Wastewater and Alleviation or Rice Seeding Growth Damage)

  • 이덕배;이경보;이상복;김재덕;테루오 헨미
    • 한국토양비료학회지
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    • 제32권4호
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    • pp.446-451
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    • 1999
  • 입상인공제올라이트의 몇 가지 광물학적 특징을 구명하고 입상인공제올라이트를 이용한 중금속 폐수 정화효과와 벼 유묘 생육장해 경감효과를 분석한 결과는 다음과 같다. 입상인공제올라이트를 X선 회절 분석하면 Na-P1의 피크가 주로 나타났고 포틀랜드 시멘트의 $C_3S$ 피크도 혼재하고 있었다. 입상인공제올라이트는 열 분석 결과 $130^{\circ}C$ 부근 흡열반응피크는 약해졌으나 $750^{\circ}C$부근 흡열반응 피크가 새롭고 깊게 나타났다. 입상인공제올라이트는 합성 폐수중 납 제거능이 가장 우수하였고, 다음으로 구리 카드뮴, 아연 순이었다. 입상인공제올라이트를 광산폐수 대비 1/50량 넣고 1일 이상, 또는 1/100량을 넣고 4일간 정체 처리하면 농업용수 기준에 적합하였다. 광산폐수 중에서 벼 유묘는 뿌리가 잘 자라지 못하여 말라죽었으나, 인공제올라이트로 정화처리수중에는 정상적으로 생육하였다.

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X-ray 회절의 반치전폭(FWHM)을 이용한 Y-TZP세라믹스에서 반복 열응력에 의한 입계크기 분석 (Grain Size Analysis by Hot-Cooling Cycle Thermal Stress at Y-TZP Ceramics using Full Width at Half Maximum(FWHM) of X-ray Diffraction)

  • 최진삼;박규열;공영민
    • 한국재료학회지
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    • 제29권4호
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    • pp.264-270
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    • 2019
  • As a case study on aspect ratio behavior, Kaolin, zeolite, $TiO_2$, pozzolan and diatomaceous earth minerals are investigated using wet milling with 0.3 pai media. The grinding process using small media of 0.3 pai is suitable for current work processing applications. Primary particles with average particle size distribution D50, ${\sim}6{\mu}m$ are shifted to submicron size, D50 ${\sim}0.6{\mu}m$, after grinding. Grinding of particles is characterized by various size parameters such as sphericity as geometric shape, equivalent diameter, and average particle size distribution. Herein, we systematically provide an overview of factors affecting the primary particle size reduction. Energy consumption for grinding is determined using classical grinding laws, including Rittinger's and Kick's laws. Submicron size is obtained at maximum frictional shear stress. Alterations in properties of wettability, heat resistance, thermal conductivity, and adhesion increase with increasing particle surface area. In the comparison of the aspect ratio of the submicron powder, the air heat conductivity and the total heat release amount increase 68 % and 2 times, respectively.

The Crystal Structure of Fully Dehydrated Fully $Ba^{2+}$-Exchanged Zeolite X

  • 장세복;김양
    • Bulletin of the Korean Chemical Society
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    • 제16권3호
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    • pp.248-251
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    • 1995
  • The crystal structure of Ba46-X, Ba46Al92Si100O384 [a= 25.297(1) Å], has been determined by single-crystal X-ray diffraction techniques in the cubic space group Fd&bar{3}at 21(1) ℃. The crystal was prepared by ion exchange in flowing stream of 0.05 M Ba(OH)2 aqueous solution for 5 days. The crystal was then dehydrated at 380 ℃ and 2 × 10-6 Torr for 2 days. The structure was refined to the final error indices R1= 0.051 and Rw= 0.054 with 369 reflections for which I > 3σ(I). In this structure, all Ba2+ ions are located at the three different crystallographic sites: fourteen Ba2+ ions are located at site Ⅰ, the centers of the double six rings, two Ba2+ ions lie at site Ⅰ', in the sodalite cavity opposite double six rings(D6R's) and another thirty Ba2+ ions are located at site Ⅱ in the supercage. Two Ba2+ ions are recessed ca. 0.27 Å into the sodalite cavity from their three O(3) oxygen plane and thirty Ba2+ ions are recessed ca. 1.11 Å into the supercage from their three O(2) oxygen planes, respectively (Ba(1)-O(3) = 2.76(1) Å, O(3)-Ba(1)-O(3) = 180(0)°, Ba(2)-O(3) = 2.45(1) Å, O(3)-Ba(2)-O(3) = 108(1)°, Ba(3)-O(2)=2.65(1) Å, and O(2)-Ba(3)-O(2)=103.9(4)°).