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Dive into the research topics where Changneng Chen is active.

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Featured researches published by Changneng Chen.


New Journal of Chemistry | 2003

Structural transformation mediated by o-, m-, and p-phthalates from two to three dimensions for manganese/phthalate/4,4′-bpy complexes (4,4′-bpy = 4,4′-bipyridine)

Chengbing Ma; Changneng Chen; Qiutian Liu; Dai-Zheng Liao; Licun Li; Licheng Sun

Three isomers of o-, m-, and p-phthalate are used to link together Mn centres, resulting in [Mn(phth)(H2O)x]n moieties (phth = phthalate dianion) with single-chain, double-chain and sheet structures, respectively, which predetermine the extended structures derived from the crosslinkage of 4,4′-bipyridine, and show the influence of isomerism of the phthalate on topological changes of the final polymers from two dimensional (2D) single-layer, double-layer to 3D network architectures. These structural changes in topology are correlated with the differences in the magnetic and optical properties of the polymers.


CrystEngComm | 2005

Framework variations in Mn(II)–organic coordination polymers: solvent templated formation and characterisation of 1D zigzag and straight chain network isomers

Chengbing Ma; Changneng Chen; Qiutian Liu

Hydrothermal reaction of manganese carbonate with 4,4′-biphenyldicarboxylic acid (H2bda) and 1,10-phenanthroline (phen) affords coordination polymers, [Mn(bda)(phen)(H2O)]n·npy·nH2O (1·npy·nH2O, 1a), [Mn(bda)(phen)(H2O)]n·2npip (1·2npip, 1b) and [Mn(bda)(phen)]n (2). The polymer 1 crystallizes into either 1D zigzag chain or straight chain structures depending on the crystallisation solvents used, and both of them stack into a 3D guest-filled porous framework via inter-chain interactions, whereas the polymer 2 organizes into a 3D ligand-filled porous coordination framework in the absence of suitable guests. The polymer 1 represents an unusual example of network isomers formed via the templating of structurally dissimilar but closely related organic guests.


Dalton Transactions | 2013

The first heterometallic examples of 3d–4f heptanuclear [MnII3LnIII4] complexes with planar disc-like cores and diverse magnetic properties

Jinying Liu; Chengbing Ma; Hui Chen; Ming-Qiang Hu; Huimin Wen; Honghua Cui; Changneng Chen

A family of heptanuclear [Mn(II)(3)Ln(III)(4)] clusters with planar disc-like cores have been synthesized by a solvothermal route, where Ln = La, Pr, Nd, and Gd, and such fascinating topology is unprecedented in 3d-4f complexes. Dc magnetic susceptibility data show different magnetic behaviors derived from the difference in Ln ions.


Dalton Transactions | 2007

Aggregation of tetranuclear Mn building blocks with alkali ion. Syntheses, crystal structures and chemical behaviors of monomer, dimer and polymer containing [Mn4(µ3-O)2]8+ units

Deguang Huang; Xiaofeng Zhang; Chengbing Ma; Hui Chen; Changneng Chen; Qiutian Liu; Chunxi Zhang; Dai-Zheng Liao; Licun Li

Aggregation of tetranuclear Mn(4)O(2) building blocks with alkali ion was studied. Several Mn(iii) complexes containing [Mn(4)O(2)(AcO)(7)(pyz)(2)](-) (pyz = pyrazinate) anion(s) were obtained from an assembly system containing Mn(ii), MnO(4)(-), HOAc and Hpyz (Napyz or Kpyz). These [Mn(4)O(2)](8+) complexes have monomeric (1 and 2), dimeric (4 and 5) and one-dimensional chain () structures of which alkali metal ion connects the Mn ions of adjacent [Mn(4)O(2)](8+) units through mu(1,1)- and mu(1,3)-carboxylate bridges. Complexes 2 or 3 were converted into [Mn(12)O(12)(AcO)(16)(H(2)O)(4)] in EtOH solution in the presence of HOAc. However, in MeOH solution, a coordination polymer [Mn(2)(HCOO)(4)(H(2)O)(4)](n) was obtained accompanying the oxidation of MeOH to become HCHO and HCOOH. Tracing the (1)H NMR spectra of 2 or 3 in CD(3)OD, the disappearance of the resonance signals in 3 h indicated the decomposition of the [Mn(4)O(2)](8+) cores. Complex 2 exhibits its proton NMR signals in CDCl(3) which are similar to those of its pic analogue but accompany downfield shift to various extents for all the corresponding signals. Variable-temperature magnetic susceptibilities of complexes 2-5 in the range 5-300 K were recorded and were fitted for an Mn(4)O(2) butterfly core, giving the fitting parameters J(bb) = -2.67 to -3.76 cm(-1) and J(wb) = -1.16 to -3.14 cm(-1). Small J values indicate weak antiferromagnetic coupling interactions of the Mn(iii) sites and the spin ground states are considered as S(T) = 0 based on the J(bb)/J(wb) ratio approximately 1 for these complexes. The ESR spectra were recorded for complex 2 in dual-mode at liquid-helium temperatures and no obvious signal could be found. The addition of p-cresol gives rise to the reduction of the [Mn(4)O(2)](8+), resulting in observable signals.


CrystEngComm | 2010

A trimanganese cluster-based 2D layer framework with facile single-crystal-to-single-crystal transformation to afford a 1D chain structure

Chengbing Ma; Ming-Qiang Hu; Hui Chen; Mei Wang; Chun-Xia Zhang; Changneng Chen; Qiutian Liu

A new isophthalate manganese(II) coordination polymer, [Mn3(ip)3(bipy)2]n·2nH2O (1) (H2ip = isophthalic acid and bipy = 2,2′-bipyridine), with a 2D layer structure built up from isophthalato-linking trimanganese clusters, is obtained by refluxing a weakly basic solution containing bipy, Mn(OAc)2·4H2O, H2ip, and triethylamine. Both the complex and the dehydrated materials show irreversible water adsorption at room temperature, accompanied by facile single-crystal-to-single-crystal structural transformation forming a 1D chain-like coordination polymer upon rehydration, [Mn(ip)(bipy)(H2O)2]n·nH2O (2). The thermogravimetric behavior and magnetic properties of both the complexes are examined.


New Journal of Chemistry | 2007

Synthesis and characterization of a family of tetranuclear manganese(III) phosphonate complexes

Mei Wang; Chengbing Ma; Daqiang Yuan; Ming-Qiang Hu; Changneng Chen; Qiutian Liu

Four tetranuclear manganese(III) complexes containing phosphonate ligands (RPO32−, R = Me, Et and n-Bu), [Mn4O2(MePO3)2(O2CMe)4(bpy)2]·4MeCOOH (1), [Mn4O2(EtPO3)2(O2CMe)4(bpy)2]·7H2O (2), [Mn4O2(n-BuPO3)2(O2CMe)4(bpy)2]·4H2O·(COOH)2 (3) and [Mn4O2(MePO3)2(O2CPh)4(phen)2]·4PhCOOH·2MeCN (4), have been synthesized and characterized by IR spectroscopy, ESI-MS spectrometry, electrochemical analysis, magnetic measurements and TGA. The X-ray analysis shows that the four complexes all have one [Mn4(μ3-O)2]8+ core with four coplanar Mn atoms disposed in an extended “butterfly-like” arrangement and two O atoms triply bridging each “wing”, and the peripheral ligation is provided by four μ2-MeCO2− or four μ2-PhCO2−, two terminal bpy or phen (bpy = 2,2′-bipyridine, phen = 1,10-phenanthroline) groups at both ends of the molecule, and two bicapping μ3-phosphonate ligands, which each binds to three manganese centers above and below the plane. The cyclic voltammetry of 1 and 3 each displays four reduction and one oxidation processes, of which the four reduction processes are possibly attributed to the reduction of four MnIII of the compounds to MnII. The ESI-MS data indicate that the family of complexes are stable in solution. Magnetic susceptibility measurements reveal that compounds 1 and 3 display antiferromagnetic interactions between the adjacent MnIII ions mediated through the μ3-O, O–C–O and O–P–O bridges.


New Journal of Chemistry | 2007

(N-CnH2n-1)-1,3-Azapropanedithiolate (n=5, 6, 7)-bridged diiron complexes as mimics for the active site of FeFe -hydrogenases: the influence of the bridge on the diiron complex

Youtao Si; Chengbing Ma; Ming-Qiang Hu; Hui Chen; Changneng Chen; Qiutian Liu

To further understand the effects of 1,3-azadithiolate (ADT) bridges on the structures and properties of diiron complexes, a novel family of (N-CnH2n−1)-1,3-azapropanedithiolate-bridged diiron complexes [Fe2(CO)6(CH2S)2N–CnH2n−1] (n = 5, 6, 7) and their PMe3-disubstituted complexes [Fe2(CO)4(PMe3)2(CH2S)2N–CnH2n−1] (n = 5, 6, 7) were synthesized as mimics of [FeFe]-hydrogenases. Our studies suggest that the coordination configurations, CO stretching frequencies, 1H and 31P NMR signals, redox potentials and electrocatalytic H2-production processes of diiron complexes are closely pertinent to the electron-donating abilities and steric chemistry of the ADT bridges.


Inorganica Chimica Acta | 2003

Synthesis, structural characterization and magnetic properties of 2-pyrazinecarboxylate manganese compounds [Mn(pyz)2(H2O)4] and [MnCl(pyz)(H2O)]n (pyz = 2-pyrazinecarboxylate)

Deguang Huang; Xiaofeng Zhang; Changneng Chen; Feng Chen; Qiutian Liu; Dai-Zheng Liao; Licun Li; Licheng Sun

Two pyz complexes [Mn(pyz)(2)(H2O)(4)] (1) and [MnCl(pyz)(H2O)] (2) have been synthesized and structurally characterized. Complex 1 contains an eight-coordinate Mn(II) ion with square anti-prismati ...


Polyhedron | 1998

X-ray crystal structures of Mo3S4(DTP)3(salicylate)(CH3CN) and [Mo3S4(DTP)3(phthalate)(Py)]2 · EtOH · CH2Cl2: intramolecular H-bonds and S–S interactions in trinuclear molybdenum cluster compounds

Ling Wu; Jibo Xia; Changneng Chen; Xiao-Ying Huang; Yuangen Yao; Jiaxi Lu

Abstract Two new molybdenum cluster compounds, Mo3S4(DTP)3(salicylate)(CH3CN) and [Mo3S4(DTP)3 (phthalate)(Py)]2 · EtOH · CH2Cl2, have been rationally synthesized by the ligand substitutional reaction of Mo3S4(DTP)4(H2O) with salicylic acid and phthalic acid, respectively. Their crystal structures have been determined. A molecular-design method for Mo3S4 cluster compounds was developed. Two incomplete cuboidal molybdenum cluster units can be linked by intramolecular H-bonds.


Inorganica Chimica Acta | 1999

Trinuclear vanadium dialkyldithiocarbamate complexes. Synthesis, structure and spectroscopic characterization of [Et4N][V3(μ3-S)(η2-μ-S2)3(Et2dtc)3] · 2CH3CN

Hongping Zhu; Qiutian Liu; Yuheng Deng; Ting-Bin Wen; Changneng Chen; Daxu Wu

Abstract A series of [V 3 S 7 (R 2 dtc) 3 ] − complexes (R=Et ( 1 ), HOCH 2 CH 2 ( 2 )) have been studied by X-ray diffraction, IR, NMR and cyclic voltammetry. The V 3 S 7 complexes show almost the same core structure features as those of corresponding [Mo 3 S 7 (R 2 dtc) 3 ] + complexes. Three V atoms possess very similar structure parameters implying their equivalence and electronic delocalization in the V 3 S 7 core. The 1 H NMR signals of the ligating R 2 dtc ligands for the V 3 S 7 complexes occur in pairs. The signals of α-CH 2 for complex 1 were found at 7.64 and 7.66 ppm and at 7.01 and 8.00 ppm for complex 2 , which significantly shifted downfield when compared to those of the respective R 2 dtcNa. This can be explained by the contact effect of the paramagnetic center through the S 2 CNCH 2 group. The cyclic voltammogram displays two reversible couples at −1.14 and 0.00 V responsible for 1−/2− and 0/1− redox processes, respectively, of the V 3 S 7 complexes.

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Qiutian Liu

Sun Yat-sen University

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Chengbing Ma

Chinese Academy of Sciences

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Ming-Qiang Hu

Chinese Academy of Sciences

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Hui Chen

Chinese Academy of Sciences

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Xiaofeng Zhang

Chinese Academy of Sciences

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Hongping Zhu

Chinese Academy of Sciences

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Feng Chen

Chinese Academy of Sciences

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Mei Wang

Dalian University of Technology

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