A large copper-niobate cluster with the pagoda-shaped subunit {Nb20O59}.
暂无分享,去创建一个
Jingping Wang | J. Niu | Zhijie Liang | P. Ma | Xue Li | Yuanyuan Qiao | Z. Liang
[1] Jingping Wang,et al. Two Novel Heteropolyniobates Using TeO32- as Template and Linker. , 2019, Inorganic chemistry.
[2] J. Caro,et al. Inside Cover: Ultra-Tuning of the Aperture Size in Stiffened ZIF-8_Cm Frameworks with Mixed-Linker Strategy for Enhanced CO2 /CH4 Separation (Angew. Chem. Int. Ed. 1/2019) , 2018, Angewandte Chemie International Edition.
[3] Xin-Xiong Li,et al. {Nb288 O768 (OH)48 (CO3 )12 }: A Macromolecular Polyoxometalate with Close to 300 Niobium Atoms. , 2018, Angewandte Chemie.
[4] Xin-Xiong Li,et al. Record High-Nuclearity Polyoxoniobates: Discrete Nanoclusters {Nb114 }, {Nb81 }, and {Nb52 }, and Extended Frameworks Based on {Cu3 Nb78 } and {Cu4 Nb78 }. , 2017, Angewandte Chemie.
[5] W. Liu,et al. Assembly of silver Trigons into a buckyball-like Ag180 nanocage , 2017, Proceedings of the National Academy of Sciences.
[6] Jingping Wang,et al. Assembly of TeO32- Ions Embedded in an Nb/O Cage with Selective Decolorization of Organic Dye. , 2017, Inorganic chemistry.
[7] C. Hill,et al. A Polyoxoniobate-Polyoxovanadate Double-Anion Catalyst for Simultaneous Oxidative and Hydrolytic Decontamination of Chemical Warfare Agent Simulants. , 2017, Angewandte Chemie.
[8] Jingping Wang,et al. {Fe3Nb25} cluster based on an Fe-centred Keggin unit. , 2017, Dalton transactions.
[9] N. K. Moroz,et al. Cation-Dependent Self-assembly of Vanadium Polyoxoniobates. , 2016, Inorganic chemistry.
[10] Changwen Hu,et al. Sulfur-centred polyoxoniobate-based 3D organic-inorganic hybrid compound and its magnetic behavior. , 2016, Chemical communications.
[11] Ying Lu,et al. An arsenicniobate-based 3D framework with selective adsorption and anion-exchange properties , 2016 .
[12] Jingping Wang,et al. A {Co4 O4 } Cubane Incorporated within a Polyoxoniobate Cluster. , 2015, Chemistry.
[13] Yang-guang Li,et al. Extended structural materials composed of transition-metal-substituted arsenicniobates and their photocatalytic activity , 2015 .
[14] S. Khan,et al. Antimony-dependent expansion for the Keggin heteropolyniobate family. , 2015, Chemical communications.
[15] W. Casey,et al. Reversible capping/uncapping of phosphorous-centered Keggin-type polyoxoniobate clusters. , 2015, Chemical communications.
[16] Z. Su,et al. New heteropolyniobates based on a bicapped Keggin-type {VNb14} cluster with selective adsorption and photocatalytic properties , 2014 .
[17] Yang-guang Li,et al. Polyoxoniobate-based 3D framework materials with photocatalytic hydrogen evolution activity. , 2014, Chemical communications.
[18] L. Zakharov,et al. Observing assembly of complex inorganic materials from polyoxometalate building blocks. , 2013, Journal of the American Chemical Society.
[19] W. Casey,et al. A soluble phosphorus-centered Keggin polyoxoniobate with bicapping vanadyl groups. , 2013, Chemistry.
[20] L. Cronin,et al. One-pot versus sequential reactions in the self-assembly of gigantic nanoscale polyoxotungstates. , 2013, Journal of the American Chemical Society.
[21] E. Wang,et al. Self-assembly and photocatalytic properties of polyoxoniobates: {Nb24O72}, {Nb32O96}, and {K12Nb96O288} clusters. , 2012, Journal of the American Chemical Society.
[22] L. Cronin,et al. Assembly of molecular "layered" heteropolyoxometalate architectures. , 2012, Angewandte Chemie.
[23] Changwen Hu,et al. An unprecedented vanadoniobate cluster with 'trans-vanadium' bicapped Keggin-type {VNb12O40(VO)2}. , 2011, Chemical communications.
[24] Fan Zuo,et al. Synthesis and photocatalytic properties of a new heteropolyoxoniobate compound: K10[Nb2O2(H2O)2][SiNb12O40)·12H2O. , 2011, Journal of the American Chemical Society.
[25] L. Cronin,et al. The construction of high-nuclearity isopolyoxoniobates with pentagonal building blocks: [HNb27O76]16- and [H10Nb31O93(CO3)]23-. , 2010, Angewandte Chemie.
[26] J. Marrot,et al. Heterometallic 3d-4f cubane clusters inserted in polyoxometalate matrices. , 2009, Chemical communications.
[27] Mingfei Zhou,et al. Coordination of niobium and tantalum oxides by Ar, Xe and O2: Matrix isolation infrared spectroscopic and theoretical study of NbO2(Ng)2 (Ng = Ar, Xe) and MO4(X) (M = Nb, Ta; X = Ar, Xe, O2) in solid argon , 2008 .
[28] Mark A. Rodriguez,et al. Lithium Polyniobates. A Lindqvist-Supported Lithium−Water Adamantane Cluster and Conversion of Hexaniobate to a Discrete Keggin Complex , 2007 .
[29] James P. Larentzos,et al. Experimental and theoretical methods to investigate extraframework species in a layered material of dodecaniobate anions. , 2007, Inorganic chemistry.
[30] A. Yagasaki,et al. Icosaniobate: a new member of the isoniobate family. , 2006, Inorganic chemistry.
[31] James P. Larentzos,et al. Synthesis, structural characterization, and molecular modeling of dodecaniobate keggin chain materials. , 2005, Inorganic chemistry.
[32] James L. Krumhansl,et al. A General Synthetic Procedure for Heteropolyniobates , 2002, Science.
[33] H. Brunner,et al. Synthesis and characterisation of [(C5Me4R)2NbS2]2M complexes (M = Fe, Co; R = Me, Et) : organometallic tetrathiometalates with niobocene ligands , 1996 .
[34] P. Gómez‐Romero,et al. Crystal structures of α-[CoIIW12O40]6- and its heteropoly blue 2e reduction product, α-[CoIIW12O40]8-. Structural, electronic, and chemical consequences of electron delocalization in a multiatom mixed-valence system , 1991 .
[35] I. D. Brown,et al. Bond‐valence parameters obtained from a systematic analysis of the Inorganic Crystal Structure Database , 1985 .
[36] B. Morosin,et al. The molecular configuration of the decaniobate ion (Nb17O286 , 1977 .
[37] J. Keggin,et al. Structure of the Molecule of i2-Phosphotungstic , 1933, Nature.