Chen Zhang-Gai, Huang Xia, Zhuang Rong-Chuan, Zhang Yu, Liu Xin, Shi Tao, Wang Shuai-Hua, Wu Shao-Fan, Mi Jin-Xiao, Huang Ya-Xi
Fujian Key Laboratory of Advanced Materials (Xiamen University), Department of Materials Science and Engineering, College of Materials, Xiamen University, Xiamen 361005, China.
Dalton Trans. 2017 Sep 12;46(35):11851-11859. doi: 10.1039/c7dt02561k.
Germanophosphates, in comparison with other metal phosphates, have been less studied but potentially exhibit more diverse structural chemistry with wide applications. Herein we applied a hydro-/solvo-fluorothermal route to make use of both the "tailor effect" of fluoride for the formation of low dimensional anionic clusters and the presence of alkali cations of different sizes to align the anionic clusters to control the overall crystal symmetries of germanophosphates. The synergetic effects of fluoride and alkali cations led to structural changes from chain-like structures to layered structures in a series of five novel fluorogermanophosphates: A[GeF(HPO)] (A = Na, K, Rb, NH, and Cs, denoted as Na, K, Rb, NH4, and Cs). Although these fluorogermanophosphates have stoichiometrically equivalent formulas, they feature different anionic clusters, diverse structural dimensionalities, and contrasting crystal symmetries. Chain-like structures were observed for the compounds with the smaller sized alkali ions (Na, K, and Rb), whereas layered structures were found for those containing the larger sized cations ((NH) and Cs). Specifically, monoclinic space groups were observed for the Na, K, Rb, and NH4 compounds, whereas a tetragonal space group P4/mbm was found for the Cs compound. These compounds provide new insights into the effects of cation sizes on the anionic clusters built from GeOF octahedra and HPO tetrahedra as well as their influences on the overall structural symmetries in germanophosphates. Further characterization including IR spectroscopy and thermal analyses for all five compounds is also presented.
与其他金属磷酸盐相比,锗磷酸盐的研究较少,但可能展现出更多样化的结构化学且具有广泛应用。在此,我们采用水热/溶剂热氟热法,利用氟化物的“剪裁效应”来形成低维阴离子簇,并利用不同尺寸的碱金属阳离子来排列阴离子簇,以控制锗磷酸盐的整体晶体对称性。氟化物和碱金属阳离子的协同效应导致了一系列五种新型氟锗磷酸盐的结构从链状结构转变为层状结构:A[GeF(HPO)](A = Na、K、Rb、NH₄和Cs,分别表示为Na、K、Rb、NH₄和Cs)。尽管这些氟锗磷酸盐具有化学计量等效的化学式,但它们具有不同的阴离子簇、多样的结构维度和截然不同的晶体对称性。对于含有较小尺寸碱金属离子(Na、K和Rb)的化合物观察到链状结构,而对于含有较大尺寸阳离子((NH₄)和Cs)的化合物则发现层状结构。具体而言,Na、K、Rb和NH₄化合物观察到单斜空间群,而Cs化合物发现四方空间群P4/mbm。这些化合物为阳离子尺寸对由GeOF八面体和HPO四面体构建的阴离子簇的影响以及它们对锗磷酸盐整体结构对称性的影响提供了新的见解。还展示了对所有五种化合物的包括红外光谱和热分析在内的进一步表征。