Citation:
LIN Hongyan, ZENG Ling, WANG Qinglin, LIU Guocheng, TIAN Yuan. Synthesis, Structure and Catalytic Properties of the Keggin-type Silicomolybdenate-based Silver Compound Modified by a Bis-pyridyl-bis-amide Ligand[J]. Chinese Journal of Applied Chemistry,
;2016, 33(1): 76-83.
doi:
10.11944/j.issn.1000-0518.2016.01.150199
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A new Keggin-type polyoxometalate-based silver compound constructed from a semi-rigid bis-pyridyl-bis-amide ligand 3-bpcd(N,N'-bis(pyridin-3-yl)cyclohexane-1,4-dicarboxamide), {[Ag2(3-bpcd)3] [Ag(3-bpcd)(SiMo12O40)]2(3-H2bpcd)2}·7H2O was prepared under the hydrothermal condition and characterized by IR, element analysis and X-ray single-crystal diffraction. The title complex is a triclinic system with space group P-1, whose cell parameters are a=1.3597(5) nm, b=1.4949(5) nm, c=2.5249(10) nm, α=88.998(6)°, β=88.856(7)°, γ=67.458(6)°, V=4.739(3) nm3, Mr=6471.02, Dc=2.261g/cm3, Z=1, S=0.955, F(000)=3124, R1=0.0768, wR2=0.1936. In this compound, a[Ag(3-bpcd)(SiMo12O40)]26- one-dimensional chain, a dinuclear[Ag2(3-bpcd)3]2+ structure unit and two non-coordinated protonated organic ligands 3-bpcd coexists. These structural units are extended into the three-dimensional supramolecular network by the hydrogen bonding interactions. The title complex modified carbon paste electrode displays good electrocatalytic activity toward NO2- reduction. Additionally, this complex possesses a remarkable photocatalytic ability for the degradation of Rhodamine B(RhB) dye. CCDC:1401875.
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[1]
[1] Hou G F,Bi L H,Li B,et al.Polyoxometalate Charge Directed Coordination Assemblies:Macrocycles and Polymer Chains[J].Cryst Eng Comm,2011,13(10):3526-3535.
-
[2]
[2] Yang L,Hou L L,Ma P T,et al.pH-Dependent Assembly of Saturated to Dilacunary Keggin-based Silicotungstate:[Cu (en)2(H2O)][H2en]{γ-SiW10O36[Cu (en)2(H2O)]2}·7.5H2O[J].J Coord Chem,2013,66(8):1330-1339.
-
[3]
[3] Ma F J,Liu S X,Sun C Y,et al.A Sodalite-type Porous Metal-organic Framework with Polyoxometalate Templates:Adsorption and Decomposition of Dimethyl Methylphosphonate[J].J Am Chem Soc,2011,133(12):4178-4181.
-
[4]
[4] Zhao W F,Zou C,Shi L X,et al.Synthesis of Diamondoid Lanthanide polyoxometalate Solids as Tunable Photoluminescent Materials[J].Dalton Trans,2012,41(33):10091-10096.
-
[5]
[5] Liu D,Lu Y,Tan H Q,et al.Polyoxometalate-based Purely Inorganic Porous Frameworks with Selective Adsorption and Oxidative Catalysis Functionalities[J].Chem Commun,2013,49(35):3673-3675.
-
[6]
[6] Wang X L,Zhao D,Tian A X,et al.A Series of 3D PW12O403--based AgⅠ-bis (triazole) Complexes Containing Different Multinuclear Loops:Syntheses,Structures and Properties[J].Cryst Eng Comm,2013,15(22):4516-4526.
-
[7]
[7] Xiao L N,Wang Y,Pan C L,et al.Three Novel Supramolecular Hybrid Compounds Based on Keggin Polytungstates[J].Cryst Eng Comm,2011,13(15):4878-4885.
-
[8]
[8] Liu H Y,Wu H,Yang J,et al.Solvothermal Assembly of a Series of Organic Inorganic Hybrid Materials Constructed from Keggin Polyoxometalate Clusters and Copper (Ⅰ) Organic Frameworks[J].Cryst Growth Des,2011,11(5):1786-1797.
-
[9]
[9] Sun C Y,Liu S X,Liang D D,et al.Highly Stable Crystalline Catalysts Based on a Microporous Metal-organic Framework and Olyoxometalates[J].J Am Chem Soc,2009,131(5):1883-1888.
-
[10]
[10] Sha J Q,Sun J W,Li M T,et al.Secondary Spacer Modulated Assembly of Polyoxometalate Based Metal-organic Frameworks[J].Dalton Trans,2013,42(5):1667-1677.
-
[11]
[11] Sun J W,Li M T,Sha J Q,et al.Assembly of the First Polyoxometalate-based Hybrid with[ring+helix]Channels and Photocatalytic Activity[J].Cryst Eng Comm,2013,15(48):10584-10589.
-
[12]
[12] Kong X F,Ren Y P,Zheng P Q,et al.Surface Modification of Polyoxometalate Host-guest Supramolecular Architectures:from Metal-organic Pseudorotaxane Framework to Molecular Box[J].Chem Commun,2011,47(14):4150-4152.
-
[13]
[13] Kulikov V,Meyer G.A New Strategy for the Synthetic Assembly of Inorganic organic Silver (Ⅰ)-polyoxometalate Hybrid Structures Employing Noncovalent Interactions Between the Obromine Ligands[J].Cryst Growth Des,2013,13(7):2916-2927.
-
[14]
[14] Lan Y Q,Li S L,Wang X L,et al.Self-assembly of Polyoxometalate-based Metal Organic Frameworks Based on Octamolybdates and Copper-organic Units:from CuⅡ,CuⅠ,Ⅱ to CuⅠ via Changing Organic Amine[J].Inorg Chem,2008,47(18):8179-8187.
-
[15]
[15] Wang X,Peng J,Liu M G,et al.Polyoxoanion-enveloped Ag/ptz Inorganic-organic Hybrid System:From a Single to a Double Template[J].Cryst Eng Comm,2012,14(9):3220-3226.
-
[16]
[16] Iturrospe A,Artetxe B,Reinoso S,et al.Copper (Ⅱ) Complexes of Tetradentate Pyridyl Ligands Supported on Keggin Polyoxometalates:Single-crystal to Single-crystal Transformations Promoted by Reversible Dehydration Processes[J].Inorg Chem,2013,526):3084-3093.
-
[17]
[17] Muthu S,Yip J H K,Vittal J J,et al.Coordination Networks of Ag (Ⅰ) and N,N'-Bis (3-pyridinecarboxamide)-1,6-hexane:Structures and Anion Exchange[J].J Chem Soc,Dalton Trans,2002,(24):4561-4568.
-
[18]
[18] Bai Y,Zhang G Q,Dang D B,et al.Assembly of Polyoxometalate-based Inorganic-organic Compounds from Silver-Schiff Base Building Blocks:Synthesis,Crystal Structures and Luminescent Properties[J].Cryst Eng Comm,2011,13(12):4181-4187.
-
[19]
[19] Brown I D,Altermatt D.Bond-valence Parameters Obtained from a Systematic Analysis of the Inorganic Crystal Structure Database[J].Acta Crystallogr B,1985,41(4):244-247.
-
[20]
[20] Wang X L,Wang Y F,Liu G C,et al.Novel Inorganic organic Hybrids Constructed from Multinuclear Copper Cluster and Keggin Polyanions:From 1D Wave-like Chain to 2D Network[J].Dalton Trans,2011,40(36):9299-9305.
-
[21]
[21] Liu H Y,Bo L,Yang J,et al.Two Novel Inorganic-organic Hybrid Materials Constructed from Two Kinds of Octamolybdate Clusters and Flexible Tetradentate Ligands[J].Dalton Trans,2011,40(38):9782-9788.
-
[22]
[22] Kan W Q,Yang J,Liu Y Y,et al.Series of Inorganic-organic Hybrid Materials Constructed from Octamolybdates and Metal-organic Frameworks:Syntheses,Structures,and Physical Properties[J].Inorg Chem,2012,51(22):11266-11278.
-
[23]
[23] Dolbecq A,Mialane P,Keita B,et al.Polyoxometalate-based Materials for Efficient Solar and Visible Light Harvesting:Application to the Photocatalytic Degradation of Azo Dyes[J].J Mater Chem,2012,22(47):24509-24521.
-
[24]
[24] Wang X L,Chang Z H,Lin H Y,et al.Effect of Polyoxoanions and Amide Group Coordination Modes on the Assembly of Polyoxometalate-based Metal organic Complexes Constructed from a Semi-rigid Bis-pyridyl-bis-amide Ligand[J].Cryst Eng Comm,2015,17(4):895-903.
-
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