Wei-Wei Sun
East China Normal University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Wei-Wei Sun.
Chemical Communications | 2009
Wei-Wei Sun; Chun-Yan Tian; Xue-Hui Jing; Yan-Qin Wang; En-Qing Gao
A novel 2D coordination polymer consisting of ferromagnetic Ni(ii) chains with alternating double EO-azide bridges and (EO-azide)bis(carboxylate) triple bridges exhibits solvent-modulated metamagnetism, and the reversible dehydration/hydration processes are accompanied by significant changes in critical temperature, critical field and hysteresis.
CrystEngComm | 2008
Wei-Wei Sun; Qi Yue; Ai-Ling Cheng; En-Qing Gao
Solvothermal reactions of dimethyl pyridazine-3,6-dicarboxylate and appropriate metal chlorides in the absence/presence of KCl, NaCl or NH4Cl yielded a series of coordination compounds of pyridazine-3,6-dicarboxylate (pzdc) with Mn(II), Co(II), Ni(II) and Zn(II). All the Mn(II) compounds contain the anionic binuclear motif [Mn2(pzdc)3]2− with the trigonal prismatic shape. Through the K/Na-O electrostatic coordination, charge-assisted N–H⋯O hydrogen bonds, and weak C–H⋯O hydrogen-bonds, the binuclear prismatic anion co-assembles with different cations ([Mn(H2O)6]2+, K+, Na+ or NH4+) to generate 3D architectures. Under similar synthetic conditions, the Co(II) and Ni(II) ions always give the neutral binuclear molecules [M2(pzdc)2(H2O)4], which are self-assembled into 3D hydrogen-bonded networks. The Zn(II) ion seems to be amphibious: in the presence of NH4+, K+ and Na+, it forms the [Zn2(pzdc)3]2− species that are isostructural with the Mn(II) species, but the absence of the above cations leads to [Zn2(pzdc)2(H2O)4], which is isomorphous with the Co(II) and Ni(II) compounds. The different structures have been qualitatively explained based on the metal ionic size, ligand constraints, inter-ligand repulsion, ligand-field effects, and anionic–cationic interactions. Magnetic studies on selected Mn(II) compounds reveal that weak antiferromagnetic coupling is operative through the triple pyridazine bridges within the prismatic anions.
Acta Crystallographica Section E-structure Reports Online | 2009
Xue-Hui Jing; Wei-Wei Sun; En-Qing Gao
In the title complex, [ZnCl2(C10H9NO4)2], the ZnII ion lies on a twofold rotation axis and is four-coordinated by two carboxylate O atoms from two 3-(2-carboxyethenyl)pyridinium-1-acetate ligands in a monodentate mode and two Cl atoms in a distorted tetrahedral geometry. In the crystal structure, intermolecular O—H⋯O hydrogen bonds link the molecules into a double-chain structure extending parallel to [101].
Chemical Communications | 2011
Yan-Qing Wang; Wei-Wei Sun; Zhen-Dong Wang; Qin-Xiang Jia; En-Qing Gao; You Song
Crystal Growth & Design | 2008
Pei-Pei Liu; Ai-Ling Cheng; Qi Yue; Na Liu; Wei-Wei Sun; En-Qing Gao
Inorganica Chimica Acta | 2009
Wei-Wei Sun; Xiong-Bing Qian; Chun-Yan Tian; En-Qing Gao
Chemical Communications | 2008
Jian-Yong Zhang; Ai-Ling Cheng; Qi Yue; Wei-Wei Sun; En-Qing Gao
Inorganic Chemistry | 2007
Wei-Wei Sun; Ai-Ling Cheng; Qin-Xiang Jia; En-Qing Gao
Inorganic Chemistry Communications | 2009
Yu Ma; Ai-Ling Cheng; Wei-Wei Sun; Jiang-Yong Zhang; En-Qing Gao
Journal of Molecular Structure | 2009
Wei-Wei Sun; Chun-Yan Tian; Qi Yue; En-Qing Gao