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1.
Chem Commun (Camb) ; 52(18): 3713-6, 2016 Mar 04.
Article in English | MEDLINE | ID: mdl-26864261

ABSTRACT

Direct white-light (CIE coordinate of x = 0.333, y = 0.335, CCT of 5455 K and CRI of 82) with a high luminous efficiency (18.4%) was achieved in the first example of Eu(3+)-Gd(3+)-containing metallopolymer Poly(2-co-NVK-co-4), which also showed tunable purplish-blue to white to yellow-green photoluminescence.

2.
IUCrJ ; 1(Pt 5): 318-27, 2014 Sep 01.
Article in English | MEDLINE | ID: mdl-25295173

ABSTRACT

A rare example is reported in which discrete Ag2 L 2 ring and (AgL)∞ chain motifs [L = N,N'-bis(3-imidazol-1-yl-propyl)-pyromellitic diimide] co-crystallize in the same crystal lattice with varying ratios and degrees of disorder. Crystal structures obtained from representative crystals reveal compatible packing arrangements of the cyclic and polymeric isomers within the crystal lattice, which enables them to co-exist within a crystalline solid solution. A feasible pathway for transformation between the isomers is suggested via facile rotation of the coordinating imidazolyl groups. This chemical system could provide a chance for direct observation of ring-opening isomerization at the crystal surface. Mass spectrometry and (1)H NMR titration show a dynamic equilibrium between cyclic and oligomeric species in solution, and a potential crystallization process is suggested involving alignment of precursors directed by aromatic stacking interactions between pyromellitic diimide units, followed by ring-opening isomerization at the interface between the solid and the solution. Both cyclic and oligomeric species can act as precursors, with interconversion between them being facile due to a low energy barrier for rotation of the imidazole rings. Thermogravimetric analysis and variable-temperature powder X-ray diffraction indicate a transition to a different crystalline phase around 120°C, which is associated with loss of solvent from the crystal lattice.

3.
Sci Rep ; 2: 612, 2012.
Article in English | MEDLINE | ID: mdl-22937221

ABSTRACT

Hydrogen bond is a typical noncovalent bond with its strength only one-tenth of a general covalent bond. Because of its easiness to fracture and re-formation, materials based on hydrogen bonds can enable a reversible behavior in their assembly and other properties, which supplies advantages in fabrication and recyclability. In this paper, hydrogen bond nanoscale networks have been utilized to separate water and oil in macroscale. This is realized upon using nanowire macro-membranes with pore sizes ~tens of nanometers, which can form hydrogen bonds with the water molecules on the surfaces. It is also found that the gradual replacement of the water by ethanol molecules can endow this film tunable transport properties. It is proposed that a hydrogen bond network in the membrane is responsible for this switching effect. Significant application potential is demonstrated by the successful separation of oil and water, especially in the emulsion forms.


Subject(s)
Oils/chemistry , Water/chemistry , Emulsions/chemistry , Hydrogen Bonding , Hydrophobic and Hydrophilic Interactions , Manganese Compounds/chemistry , Nanowires/chemistry , Nanowires/ultrastructure , Oxides/chemistry
4.
Chem Commun (Camb) ; 48(47): 5925-7, 2012 Jun 14.
Article in English | MEDLINE | ID: mdl-22552214

ABSTRACT

A 3D macro-assembly with α-MnO(2) nanowires as flexible building blocks was obtained by a simple hydrothermal method. The sample with an interconnected open porous structure shows excellent mechanical strength, selective adsorption of cationic dyes and some certain types of toxic heavy metal ions.


Subject(s)
Manganese Compounds/chemistry , Nanowires/chemistry , Oxides/chemistry , Adsorption , Coloring Agents/chemistry , Gentian Violet/chemistry , Metals, Heavy/chemistry , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Nanowires/ultrastructure , Porosity , Powder Diffraction , Spectrophotometry, Ultraviolet , Water Pollutants, Chemical/chemistry , X-Ray Diffraction
6.
Inorg Chem ; 44(13): 4515-21, 2005 Jun 27.
Article in English | MEDLINE | ID: mdl-15962958

ABSTRACT

The reactions of Cu(II) with the mixed nitrilotriacetic acid (H3NTA) and 4,4'-bipyridyl (4,4'-bpy) ligands in different metal-to-ligand ratios in the presence of NaOH and NaClO4 afforded two complexes, Na3[Cu2(NTA)2(4,4'-bpy)]ClO4 x 5H2O (1) and [Cu2(NTA) (4,4'-bpy)2]ClO4 x 4H2O (2). The two complexes have been characterized by elemental analysis, IR, XRD, and single-crystal X-ray diffraction. 1 contains a basic doubly negatively charged [Cu2(NTA)2(4,4'-bpy)]2- dinuclear unit which was further assembled via multiple Na-O and O-H...O interactions into a three-dimensional (3D) pillared-layer structure. 2 features a two-dimensional (2D) undulated brick-wall architecture containing a basic doubly positively charged [Cu4(NTA)2(4,4'-bpy)2]2+ tetranuclear unit. The 2D network possesses large cavities hosting guest molecules and was further assembled via O-H...O hydrogen bonds into a 3D structure with several channels running in different directions.

7.
Inorg Chem ; 44(6): 1810-7, 2005 Mar 21.
Article in English | MEDLINE | ID: mdl-15762707

ABSTRACT

Three new complexes [Cd(4-pmpmd)1.5 (NO3)2] x CHCl3 (1), [Cd(3-pmpmd)1.5 (NO3)2] x EtOH (2), and [Zn(3-pmpmd)1.5 (NO3)2] x MeOH (3) (3- or 4-pmpmd = N,N'-bis(3- or 4-pyridylmethyl)pyromellitic diimide) containing T-shaped building blocks have been obtained from reactions between the long semirigid ligands 3- or 4-pmpmd and either cadmium or zinc nitrate. 1 forms noninterpenetrated 1D molecular ladders that are linked via multiple, complementary intermolecular C-H...O hydrogen bonds that effect the 3D alignment. 2 and 3 are isostructural and feature a noninterpenetrated 2D butterfly-shaped network with (6,3) topology. Multiple intermolecular C-H...O hydrogen bonds exist between the 2D layers and generate the 3D framework. The structural differences between 1 and 2 or 3 are attributed to the different conformations adopted by the ligands, which illustrate the influence of positional isomerism on the resultant supramolecular architectures of metal complexes.

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