采用固态反应方法合成了有序的铁基硼磷酸盐Fe2BP3O12,用X射线粉末衍射方法精修了其晶体结构,属三方晶系,空间群为P3,α=8.02703(6)°A,c=7.40168(9)°A,V=413.02(1)°A3,Dx=3.2758(1)(g/cm3),Z=2,对于55个参数,用188条衍射线及18001个衍射强度全谱数据点精修到R(Ⅰ)=6.35%,R(p)=15.36%,所对应的R(dbw)=10.12%.B原子具有三角形氧配位,P和Fe的氧配位分别是四面体和八面体.Fe的两配位八面体共面形成新结构单元,BO3三角形联接磷氧和铁氧多面体形成三维结构.对比同构的铬硼磷酸盐,此化合物期望具有类似的非线性光学及其它非线性物理性质.
Fe2BP3O12 was synthesized by high temperature solid state reactions. Its crystal
structure was refined by powder X-ray diffraction methods, belonging to trigonal system with space group P3, a=8.02703(6)A, c=7.40168(9)A,
V=413.02(1)A3, Dx=3.2758(1)(g/cm3), Z=2. The full profile refinement resulted to R(I)=6.35%, R(p)=15.36% and R(dbw)=10.12%
for 55 parameters using 188 reflections and 18001 profile data points. The structure contains [BP3O12]4- poly-anion, built by trigonal
planar BO3 sharing the three corner oxygen atom with three PO4 tetrahedra. And Fe2O9 bi-octahedra fused by two face-sharing FeO6 connect
with the poly-anions forming three dimensional ordered structure. Compared with its chromium isotypic compound, Cr2BP3O12, which shows NLO
property, the title compound may be a potential NLO material.
参考文献
[1] | Sengupta P K, Swihart G H, Dimitrijevic R, et al. Amer. Mineral., 1991, 76: 1400--1407. [2] Kniep R, Engelhardt H, Hauf C. Chem. Mater., 1998, 10: 2930--2934. [3] Van Klooster H S Z. Anorg. Allg. Chem., 1911. 122--134. [4] 宓锦校, 毛少瑜, 黄雅熙, 等. 厦门大学学报(自然科学版), 2001, 40: 366--374. [5] 黄雅熙, 过渡金属(Cr、Co、Fe)和主族元素(Ga、In)硼磷酸盐及磷酸盐体系中新化合物的合成与表征, 硕士论文. 厦门大学, 2001. [6] 李满荣, 主族元素(In)硼磷酸盐磷酸盐体系中新化合物的合成与表征, 硕士论文.厦门大学, 2002. [7] Sevov S C. Angew. Chem. Int. Ed., 1996, 35: 2630--2632. [8] Mi J-X, Zhao J-T, Mao S-Y, et al. Z. Kristallogr. NCS, 2000, 215: 201--202. [9] Mi J-X, Mao S-Y, Chen Z H, et al. Chinese Chem. Letter, 1999, 10: 707--708. [10] Boy I, Hauf C, KniepR Z. Naturforsch. B, 1998, 53 (5-6): 631--633. [11] Huang Y-X, Schaefer G, Carrillo-Cabrera W, et al. Chem. Mater., 2001, 13: 4348--4354. [12] Akselrud L G, Zavalii P Y, Grin Yu N, et al. Materials Science Forum, 1993, 133-136: 335--340. [13] Kniep R, Goezel G, Eisenmann B, et al. Angew. Chem. Int. Ed. Engl., 1994, 33: 749--751. [14] Bontchev R P, Sevov S C. Inorg. Chem., 1996, 35: 6910--6911. [15] Kpalina K, Maksimova S I, Chibiskova N T, et al. Inorg. Mater., 1984, 20: 919--923. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%