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稀土三聚氰胺氰酸盐[NH(4)]Ln[HC(6)N(9)](2)[H(2)O](7)H(2)O(Ln = La、Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy):结构研究、固态核磁共振光谱及光致发光

Rare-earth tricyanomelaminates [NH(4)]Ln[HC(6)N(9)](2)[H(2)O](7)H(2)O (Ln=La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy): structural investigation, solid-state NMR spectroscopy, and photoluminescence.

作者信息

Nag Abanti, Lotsch Bettina V, Schmedt Auf der Günne Jörn, Oeckler Oliver, Schmidt Peter J, Schnick Wolfgang

机构信息

Department Chemie und Biochemie, Ludwig-Maximilians-Universität München, Butenandtstrasse 5-13 (D), 81377 München, Germany.

出版信息

Chemistry. 2007;13(12):3512-24. doi: 10.1002/chem.200601354.

Abstract

The rare-earth tricyanomelaminates, [NH(4)]LnHC(6)N(9)H(2)OxH(2)O (LnTCM; Ln=La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy), have been synthesized through ion-exchange reactions. They have been characterized by powder as well as single-crystal X-ray diffraction analysis, vibrational spectroscopy, and solid-state (1)H, (13)C, and (15)N MAS NMR spectroscopy. The X-ray powder pattern common to all nine rare-earth tricyanomelaminates LnTCM (Ln=La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy) indicates that they are isostructural. The single-crystal X-ray diffraction pattern of LnTCM is indicative of non-merohedral twinning. The crystals are triclinic and separation of the twin domains as well as refinement of the structure were successfully carried out in the space group P1 for LaTCM (LaTCM; P1, Z=2, a=7.1014(14), b=13.194(3), c=13.803(3) A, alpha=90.11(3), beta=77.85(3), gamma=87.23(3) degrees , V=1262.8(4) A(3)). In the crystal structure, each Ln(3+) is surrounded by two nitrogen atoms from two crystallographically independent tricyanomelaminate moieties and seven oxygen atoms from crystal water molecules. The positions of all of the hydrogen atoms of the ammonium ions and water molecules could not be located from difference Fourier syntheses. The presence of NH(4) ions as well as two NH groups belonging to two crystallographically independent monoprotonated tricyanomelaminate moieties has only been confirmed by subjecting LaTCM to solid-state (1)H, (13)C, and (15)N{(1)H} cross-polarization (CP) MAS NMR and advanced CP experiments such as cross-polarization combined with polarization inversion (CPPI). The (1)H 2D double-quantum single-quantum homonuclear correlation (DQ SQ) spectrum and the (15)N{(1)H} 2D CP heteronuclear-correlation (HETCOR) spectrum have revealed the hydrogen-bonded (N--HN) dimer of monoprotonated tricyanomelaminate moieties as well as H-bonding through NH(4) ions and H(2)O molecules. The structures of the other eight rare-earth tricyanomelaminates (LnTCM; Ln=Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy) have been refined from X-ray powder diffraction data by the Rietveld method. Photoluminescence studies of [NH(4)]EuHC(6)N(9)H(2)OxH(2)O have revealed orange-red (lambda(max)=615 nm) emission due to the (5)D(0)-(7)F(2) transition, whereas [NH(4)]TbHC(6)N(9)H(2)OxH(2)O has been found to show green emission with a maximum at 545 nm arising from the (5)D(4)-(7)F(5) transition. DTA/TG studies of [NH(4)]LnHC(6)N(9)H(2)OxH(2)O have indicated several phase transitions associated with dehydration of the compounds above 150 degrees C and decomposition above 200 degrees C.

摘要

稀土三聚氰胺氰酸盐[NH(4)]LnHC(6)N(9)H(2)OxH(2)O(LnTCM;Ln = La、Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy)已通过离子交换反应合成。它们通过粉末以及单晶X射线衍射分析、振动光谱和固态(1)H、(13)C和(15)N MAS NMR光谱进行了表征。所有九种稀土三聚氰胺氰酸盐LnTCM(Ln = La、Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy)共同的X射线粉末图谱表明它们是同构的。LnTCM的单晶X射线衍射图谱表明存在非镜像孪晶。晶体为三斜晶系,并且在空间群P1中成功地对LaTCM(LaTCM;P1,Z = 2,a = 7.1014(14),b = 13.194(3),c = 13.803(3) Å,α = 90.11(3),β = 77.85(3),γ = 87.23(3)°,V = 1262.8(4) Å(3))进行了孪晶域的分离以及结构的精修。在晶体结构中,每个Ln(3+)被来自两个晶体学独立的三聚氰胺氰酸盐部分的两个氮原子以及来自结晶水分子的七个氧原子所包围。通过差值傅里叶合成无法确定铵离子和水分子中所有氢原子的位置。仅通过对LaTCM进行固态(1)H、(13)C和(15)N{(1)H}交叉极化(CP)MAS NMR以及诸如交叉极化与极化反转相结合(CPPI)等先进的CP实验,才证实了NH(4)离子以及属于两个晶体学独立的单质子化三聚氰胺氰酸盐部分的两个NH基团的存在。(1)H二维双量子单量子同核相关(DQ SQ)光谱和(15)N{(1)H}二维CP异核相关(HETCOR)光谱揭示了单质子化三聚氰胺氰酸盐部分的氢键(N--HN)二聚体以及通过NH(4)离子和H(2)O分子的氢键作用。其他八种稀土三聚氰胺氰酸盐(LnTCM;Ln = Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy)的结构已通过Rietveld方法从X射线粉末衍射数据进行了精修。[NH(4)]EuHC(6)N(9)H(2)OxH(2)O的光致发光研究揭示了由于(5)D(0)-(7)F(2)跃迁产生的橙红色(λ(max)=615 nm)发射,而[NH(4)]TbHC(6)N(9)H(2)OxH(2)O已被发现显示出在545 nm处最大发射的绿色发射,这是由(5)D(4)-(7)F(5)跃迁引起的。[NH(4)]LnHC(6)N(9)H(2)OxH(2)O的DTA/TG研究表明,在150℃以上存在与化合物脱水相关的几个相变,在200℃以上存在分解。

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