• 제목/요약/키워드: Diffraction rings

검색결과 98건 처리시간 0.03초

루비듐 증기와 반응한 제올라이트 4A에 대한 결정학적 연구 (Crystallographic Study on Zeolite 4A Reacted with Rubidium Vapor)

  • 송승환;김양;한영욱
    • 한국광물학회지
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    • 제4권2호
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    • pp.99-107
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    • 1991
  • Three fully dehydrated fully Rb+-exchanged zeolite A single crystals have been prepared by the reduction of all Na+ ions in dehydrated Na12-A by rubidium vapor at various experimental conditions (220 $\leq$ T $\leq$ 33$0^{\circ}C$, 2 $\leq$ t $\leq$24 hours, and 0.1 $\leq$ PRb $\leq$ 1.1 Torr). Their structures were determined by single-crystal X-ray diffraction methods in the space group {{{{ RHO }}m3m (a=12.245(3) A) at 22(1)$^{\circ}C$. In these structures 12.6(2) to 13.5(2) Rb species are found per unit cell, more than the 12 Rb+ ions needed to balance the anionic charge of the zeolite framework, indication that the sorption of Rb0 has occurred. In each structure, three Rb+ ions per unit cell are located at the centers of 8-rings. Beyond that, the fractional occupancies observed are simply explained by two unit cell arrangments. In one, two Rb+ ions are in the sodalite unit near opposite 6-rings, six are in the large cavity near 6-ring, and one is in the large cavity near a 4-ring. In the other, three Rb species in the sodalite cavity (forming a triangle 3.7 A on an edge) each bond (3.4 A) through a 6-ring to an Rb species in the large cavity to give an (Rb6)4+ cluster of symmetry 3m (C3V). Five additional Rb+ ions fill the remaining large-cavity 6-ring sites.

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Crystallographic Analysis of Ar Encapsulate within Cs3-A Zeolite

  • Lim, Woo Taik;Kim, Bok Jo;Park, Jong Sam;Chang, Chang Hwan;Jung, Sung Wook;Heo, Nam Ho
    • 분석과학
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    • 제15권6호
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    • pp.540-549
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    • 2002
  • The arrangement of encapsulated Ar atoms in the molecular-dimensioned cavities of fully dehydrated zeolite A of unit-cell composition $Cs_3Na_8HSi_{12}Al_{12}O_{48}$ ($Cs_3$-A) has been studied crystallographically to probe the confinement effect of guest species in microporous environment. Atoms of Ar were encapsulated in the cavities of $Cs_3$-A by treatment with 410 atm of Ar at $400^{\circ}C$ for two days, followed by cooling at room temperature. The crystal structure of $Cs_3Na_8H$-A(4Ar) ($P_e$ = 410 atm, $a=12.245(2){\AA}$, $R_1=0.0543$, and $R_2=0.0552$) has been determined by single crystal X-ray diffraction technique in the cubic space group $Pm\bar{3}m$ at 21 (1) $^{\circ}C$ and 1 atm. Encapsulated Ar atoms are distributed in three crystallographic distinct positions: 1.5 Ar atoms per unit cell opposite 6-rings, 1.5 opposite four-rings in the large cavity, and finally 1.0 in the sodalite-unit. The possible structures of argon clusters, such as $Ar_2$, $Ar_3$, and $Ar_4$, are proposed.

제주도 화산쇄설암의 불석광물 (Zeolites in the Volcaniclastics of Jeju Island)

  • 정기영;손영관;전용문
    • 한국광물학회지
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    • 제23권1호
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    • pp.39-50
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    • 2010
  • 제주도 응회구 및 응회환과 지하 서귀포층 화산쇄설암에서 화산유리 변질산물로서 불석광물들이 생성되었다. X선회절분석과 전자현미화학분석으로 확인된 주요 불석광물은 필립사이트와 아날심이다. 아날심과 필립사이트의 Si/(Si+Al) 원자비는 모물질인 현무암 유리와 유사하다. 아날심의 화학조성은 매우 단순하지만, 필립사이트는 구조 내 공극 양이온들의 비율이 매우 다양하다. 아날심이 산출되는 당산봉 및 용머리 응회암에서는 Na, 그리고 시추코아에서는 K와 Ca가 필립사이트의 주요 공극양이온이었다. 변질조직의 주사전자현미경 관찰에 의하면 필립사이트가 먼저 침전되고, 후기에 아날심이 충전하였다. 제주도의 여러 응회환/구 중에서도 층서적으로 가장 오래된 당산봉과 용머리 응회암에서 지표수와의 오랜 반응으로 불석광물들이 다량 생성되었고 비교적 연대가 젊은 다른 응회환/구에는 볼석이 거의 생성되지 않았다.

Silver Ions in Zeolite A are Reduced by H$_2$ only at High Temperatures when 8-Rings are Blocked by Cs$^+$. Crystal Structures of Dehydrated $Ag_9Cs_3$-A Treated with H$_2$ at 23, 310, and 470${^{\circ}C}$

  • KIm, Yang;Seff, Karl
    • Bulletin of the Korean Chemical Society
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    • 제8권2호
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    • pp.69-72
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    • 1987
  • The structures of dehydrated $Ag_9Cs_3$-A treated with hydrogen gas at three different temperatures have been determined by single-crystal X-ray diffraction techniques. Their structures were solved and refined in the cubic space group Pm3m at 23(1) $^{\circ}C$. All crystals were ion exchanged in flowing streams of aqueous $AgNO_3$/$CsNO_3$ with a mole ratio 1:3.0 to achieve the desired crystal composition. The structures treated with hydrogen at $23^{\circ}C(a=12.288(1)\;{\AA})\;and\;310^{\circ}C(a=12.291(2)\;{\AA})$ refined to the final error indices R1 = 0.091 and R2 = 0.079, and 0.065 and 0.073, respectively, using the 216 and 227 reflections, respectively, for which I >3${\sigma}$(I). In both of these structures, eight $Ag^+$ ions are found nearly at 6-ring centers, and three $Cs^+$ ions lie at the centers of the 8-rings at sites of $D_{4h}$ symmetry. One $Ag^{\circ}atom$, presumably formed from the reduction of a $Ag^+$ ion by an oxide ion of a residual water molecule or of the zeolite framework during the dehydration process, is retained within the zeolite, perhaps in a cluster. In these two structures hydrogen gas could not enter the zeolite to reduce the $Ag^+$ ions because the large $Cs^+$ ions blocked all the 8-windows. However, hydrogen could slowly diffuse into the zeolite and was able to reach and to reduce about half of the $Ag^+$ ions in the structure only at high temperature ($470^{\circ}C$). The silver atoms produced migrated out of the zeolite framework, and the protons generated led to substantial crystal damage.

Crystal Structure of a Benzene Sorption Complex of Dehydrated Fully $Cd^{2+}$-Exchanged Zeolite X

  • 김양;염영훈;최은영;김안나;한영욱
    • Bulletin of the Korean Chemical Society
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    • 제19권11호
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    • pp.1222-1227
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    • 1998
  • The crystal structure of a benzene sorption complex of fully dehydrated Cd2+-exchanged zeolite X, Cd46Si100Al92O384·43C6H6 (a=24.880(6) Å), has been determined by single-crystal X-ray diffraction techniques in the cubic space group Fd3 at 21 ℃. The crystal was prepared by ion exchange in a flowing stream of 0.05 M aqueous Cd(NO3)2 for 3 d, followed by dehydration at 400 ℃ and 2 x 10-6 Torr for 2 d, followed by exposure to about 92 Torr of benzene vapor at 22 ℃. The structure was determined in this atmosphere and refined to the final error indices R1=0.054 and Rw=0.066 with 561 reflections for which I > 3σ(I). In this structure, Cd2+ ions are found at four crystallographic sites: eleven Cd2+ ions are at site 1, at the centers of the double six-oxygen rings; six Cd2+ ions lie at site I', in the sodalite cavity opposite to the double six-oxygen rings; and the remaining 29 Cd2+ ions are found at two nonequivalent threefold axes of unit cell, sites Ⅱ' (in the sodalite cavity ) and site Ⅱ (in the supercage) with occupancies of 2 and 27 ions, respectively. Each of these Cd2+ ions coordinates to three framework oxylkens, either at 2.173(13) or 2.224(10) Å, respectively, and extends 0.37 Å into the sodalite unit or 0.60 Å into the supercage from the plane of the three oxygens to which it is bound. The benzene molecules are found at two distinct sites within the supercages. Twenty-seven benzenes lie on threefold axes in the large cavities where they interact facially with the latter 27 site-Ⅱ Cd2+ ions (Cd2+-benzene center=2.72 Å; occupancy=27 molecules/32 sites). The remaining sixteen benzene molecules are found in 12ring planes; occupancy=16 molecules/16 sites. Each hydrogen of these sixteen benzenes is ca. 2.8/3.0 Å from three 12-ring oxygens where each is stabilized by multiple weak electrostatic and van der Waals interactions with framework oxygens.

Chemistry and Crystallographic Studies of Metal Ion Exchanged Zeolite X. Ⅰ. The Crystal Structure of Fully Dehydrated and Fully $K^+$-Exchanged Zeolite X, $K_{92}$-X

  • 장세복;김양
    • Bulletin of the Korean Chemical Society
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    • 제16권6호
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    • pp.539-542
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    • 1995
  • The crystal structure of K92-X (K92Al92Si100O384), a=25.128(1) Å, dehydrated at 360 ℃ and 2X 10-6 Torr, has been determined by single-crystal X-ray diffraction techniques in the cubic space group Fd&bar{3} at 21(1) ℃. The structure was refined to the final error indices R1=0.044 and Rw=0.039 with 242 reflections for which I<3σ(I). In this structure, ninety-two K+ ions are located at the five different crystallographic sites. Sixteen K+ ions are located at the centers of the double six rings (site I; K(1)-O(3)=2.65(2) Å and O(3)-K(1)-O(3)=92.0(6)°). About twelve K+ ions lie at site I' in the sodalite cavity opposite double six rings (D6R's) and these K+ ions are recessed ca. 1.62 Å into the sodalite cavity from their O(3) plane (K(2)-O(3)=2.74(2) Å, O(3)-K(2)-O(3)=88.5(8)°). About thirty-two K+ ions are located at the site II in the supercage and these K+ ions are recessed ca. 1.20 Å into the supercage from their O(2) plane (K(3)-O(2)=2.64(2) Å, and O(2)-K(3)-O(2)=101(1)°). About twenty-two K+ ions lie at the site III in the supercage opposite 4-ring ladder and the remaining ten K+ ions lie at the site III' near the 4-ring ladder in the supercage (K(4)-O(4)=2.88(3) Å, O(4)-K(4)-O(4)=79.8(9)°, K(5)-O(4)=2.8(2) Å, and O(4)-K(5)-O(4)=68(5)°).

탈수한 $Ag^{+}$ 이온과 $Ca^{2+}$ 이온으로 치환한 제올라이트 $A,\;Ag_{12-2x}Ca_x-A\;(x=2\;and\;3)$를 Cs 증기로 처리한 결정구조 (Two Crystal Structures of Dehydrated $Ag^{+}$- and $Ca^{2+}$-Exchanged Zeolite $A,\;Ag_{12-2x}Ca_x-A\;(x=2\;and\;3)$ Treated with Cesium Vapor)

  • 송승환;김양
    • 대한화학회지
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    • 제38권9호
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    • pp.621-627
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    • 1994
  • $Ag^{+}$ 이온과 $Ca^{2+}$ 이온으로 치환된 제올라이트 $A(Ag_{12-2x}Ca_{x}-A$, x=2 및 3)$를 탈수하고 $250^{\circ}C$, 0.15torr의 Cs 증기로 처리한 결정구조를 X-선 단결정 회절법으로 입방공간군 Pm{\bar\3m(a=12.344(2){\AA}$/ 과 12.304(2) $\AA$)을 사용하여 해석하였다. 이들 구조에서 최종 오차인자 값 Rw는 I > $3\sigma(I)$인 180 및 179개의 반사를 이용하여 0.091 및 0.093까지 정밀화시켰다. 이들 구조에서 Cs종은 네 개의 서로 다른 결정학적 자리에 위치하였다. 단위세포당 세 개의 $Cs^{+}$ 이온은 8-링 중심에 위치하여, 6.81~7.14개의 $Cs^{+}$이온은 큰 동공내의 3회 회전축상 6-링상에 위치하고, 1.83~2.03개의 $Cs^{+}$ 이온은 소다라이트 동공내의 3회 회전축상에 위치하고, 0.66~0.71개의 $Cs^{+}$이온은 4-링에 위치하였다. 또한 4.12~4.27개의 Ag 원자는 큰 동공 중심 가까이에 위치하였다. 이들 구조에서 단위세포내에 과잉으로 흡착된 Cs원자들은 3회 회전축상 위에 놓여 있는 $Cs^{+}$이온과 결합하여 선형의 $(Cs_4)^{3+}$ 클라스터를 형성하고 있었다. 또 $Cs^+$ 이온이 8-링을 차지하고 있어서 은 원자가 구조 밖으로 나오지 못하게 막고 있었다. 이들 원자는 큰 동공 중심에서 hexasilver 클라스터를 형성하고 있었으며, 14개의 $Cs^{+}$ 이온과 배위하여 안정화되어 있었다.

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Crystal Structure of Xenon Encapsulate within Na-A Zeolite

  • 임우택;박만;허남호
    • Bulletin of the Korean Chemical Society
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    • 제21권1호
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    • pp.75-80
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    • 2000
  • The positions of Xe atoms encapsulated in the molecular-dimensioned cavities of fully dehydrated Na-A have been determined. Na-A was exposed to 1050atm of xenon gas at 400 $^{\circ}C$ for seven days, followed by cooling at pressure to encapsulate Xe atoms. The resulting crystal structure of Na-A(7Xe) (a = 12.249(1) $\AA$, $R_1$ = 0.065, and $R_2$ = 0.066) were 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 Na-A(7Xe), seven Xe atoms per unit cell are distributed over four crystallographically distinct positions: one Xe atom at Xe(1) lies at the center of the sodalite unit, two Xe atoms at Xe(4) are found opposite four-rings in the large cavity, and four Xe atoms, two at Xe(2) and others at Xe(3), respectively, occupy positions opposite and between eight- and six-rings in the large cavity. Relatively strong interactions of Xe atoms at Xe(2) and Xe(3) with $Na^+$ ions of four-, eight-, and six-rings are observed:Na(1)-Xe(2) = 3.09(6), Na(2)-Xe(3) = 3.11(2), and Na(3)-Xe(2) = 3.37(8) $\AA$. In each sodalite unit, one Xe atom is located at its center. In each large cavity, six Xe atoms are found, forming a distorted octahedral arrangement with four Xe atoms, at equatorial positions (each two at Xe(2) and Xe(3)) and the other two at axial positions (at Xe(4)). With various reasonable distances and angles, the existence of $(Xe)_6$ cluster is proposed (Xe(2)-Xe(3) = 4.78(6) and 4.94(7), Xe(2)-Xe(4) = 4.71(6) and 5.06(6), Xe(3)-Xe(4) = 4.11(3) and 5.32(4) $\AA$, Xe(2)-Xe(3)-Xe(2) = 93(1), Xe(3)-Xe(2)-Xe(3) = 87(1), Xe(2)-Xe(4)-Xe(2) = 91(4), Xe(2)-Xe(4)-Xe(3) = 55(2), 59(1), 61(1), and 68(1), and Xe(3)-Xe(4)-Xe(3) = 89($^{\circ}1$)). These arrangements of the encapsulated Xe atoms in the large cavity are stabilized by alternating dipoles induced on Xe(2), Xe(3), and Xe(4) by eight- and six-ring $Na^+$ ions as well as four-ring oxygens, respectively.

Crystal and Molecular Structure of 12-(2-Methoxyphenyl)-9-[(4-methylbenzene)sulfonyl]-22-oxo-13,21-dioxa-9-azapentacyclo [12.8.0.02,11.03,8.015,20]docosa-1(14),3,5,7,15(20),16,18-heptaene-11-carbonitrile

  • Ganapathy, Jagadeesan;Damodharan, Kannan;Manickam, Bakthadoss;Sanmargam, Aravindhan
    • 통합자연과학논문집
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    • 제7권3호
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    • pp.149-158
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    • 2014
  • The crystal structure of the title compounds with both coumarin and sulfonamide moieties were examined. These two groups have very special for their pharmaceutical and medicinal properties have been determined from single crystal X-ray diffraction data. In the title compound crystallizes in the monoclinic space group $P2_1/c$ with unit cell dimension a=$8.5775(4){{\AA}$, b=$24.9943(13){\AA}$ and c=$13.7319(7){\AA}$ [alpha & gamma=$90^{\circ}$ beta=$103.558(2)^{\circ}$]. In the structure The S1 atom shows a distorted tetrahedral geometry, with O1-S1-O2 [$121.08(1)^{\circ}$] and N1-S1-C5 [$105.85(1)^{\circ}$] angles deviating from ideal tetrahedral values are attributed to the Thrope-Ingold effect. The sum of bond angles around N1 ($354.9^{\circ}$) indicates that N1 is in $sp^2$ hybridization. The Pyridine ring adopts boat conformation and pyran rings adopt a sofa conformation. Crystal structure is stabilized by C-H...O intra molecular hydrogen bond interactions.

EF-TEM을 이용한 비정질 실리카 나노입자의 구조 및 상전이 연구 (Structural Analysis & Phase Transition of Amorphous Silica Nanoparticles Using Energy-Filtering TEM)

  • 박종일;김진규;송지호;김윤중
    • Applied Microscopy
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    • 제34권1호
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    • pp.23-29
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    • 2004
  • 본 연구에서는 에너지 여과장치와 직접 고온 가열 장치를 이용하여 실리카 나노입자의 비정질 구조 분석과 가열실험을 통한 구조변화에 대해 연구하였다. 실리카 나노입자의 전자회절도형은 세 개의 diffuse한 ring으로 구성이 되어 있으며, $900^{\circ}C$의 온도에서 실리카 나노입자는 서서히 결정화가 이루어짐을 알 수가 있었다. 세 개의 diffuse한 ring은 비정질 실리카 구조가 $SiO_4$ tetrahedra가 구조의 기본 단위로 이루어졌으며, 가열에 의해 이들이 점이적으로 tridymite 이상적인 층상 구조로 결정화되어 간다는 것을 이해할 수 있었다. 또한 전자현미경 내의 고진공하에서 $850^{\circ}C$ 이상의 온도 가열로 인해 $SiO_2$로부터 증발된 SiO가 grid에 재증착되는 것을 관찰할 수 있었고, 남아 있는 $SiO_2$는 전기로를 이용한 가열 실험결과와 같이 비정질 구조에서 orthorhombic trydimite로의 결정화가 이루어짐을 알 수 있었다.