Akihiro Shimizu、Masayoshi Nakano、Yasukazu Hirao 等 4 位作者2011-12-15ChemInform
Abstract Review: 65 refs.
Crystallography and molecular interactionsOrganic and Molecular Conductors ResearchAdvanced NMR Techniques and Applications
V. V. Ivanovskaya、A. L. Ivanovskiĭ2011-12-15ChemInform
Abstract Review: 332 refs.
Fullerene Chemistry and ApplicationsCarbon Nanotubes in CompositesMolecular Junctions and Nanostructures
Nicholas G. Davey、Erik T. Krogh、Chris G. Gill2011-12-15ChemInform
Abstract Review: 58 refs.
Advanced biosensing and bioanalysis techniquesMass Spectrometry Techniques and ApplicationsLuminescence and Fluorescent Materials
Inga Schellenberg、Ulrike Pfannenschmidt、Matthias Eul 等 5 位作者2011-12-15ChemInform
Abstract The title compounds are characterized by powder XRD, magnetic measurements, and 121Sb and 151Eu Moessbauer spectroscopy.
Rare-earth and actinide compoundsMagnetic Properties of AlloysIron-based superconductors research
Arne Kloke、Felix von Stetten、Roland Zengerle 等 4 位作者2011-12-15ChemInform
Abstract Review: 322 refs.
Electrocatalysts for Energy ConversionNanoporous metals and alloysSupercapacitor Materials and Fabrication
Andreas Heerwig、Michael Ruck2011-12-15ChemInform
Abstract Black needle‐shaped crystals of the title compound are prepared by reaction of Cu, Bi2S3, and CuBr (evacuated silica tube,1120 K; tempering at 570 K for two weeks; quenching).
Crystal Structures and PropertiesIron-based superconductors researchAdvanced Chemical Physics Studies
Daniel Braeunling、Rainer Niewa2011-12-15ChemInform
Abstract The title compound is synthesized by reaction of a 2:1 mixture of CeN and CrN (sealed Ni ampule, 1320 K).
Organometallic Complex Synthesis and CatalysisMXene and MAX Phase MaterialsInorganic Chemistry and Materials
Xuean Chen、Zhipeng Chu、Xinan Chang 等 5 位作者2011-12-15ChemInform
Abstract The title compound is synthesized by solid state reaction of a 3:3:5 mixture of BaCO3, Al(OH)3, and H3BO3 in the presence of Bi2O3 as a fluxing agent (Au crucible, 770 °C, 4 weeks).
Advanced Condensed Matter PhysicsCrystal Structures and PropertiesInorganic Chemistry and Materials
Matthew J. Polinski、Shuao Wang、Evgeny V. Alekseev 等 5 位作者2011-12-15ChemInform
Abstract Compounds (II), (III), and (V) are characterized by single crystal XRD.
Nuclear materials and radiation effectsRadioactive element chemistry and processingNuclear Materials and Properties
Zhongbin Zhuang、Qing Peng、Yadong Li2011-12-15ChemInform
Abstract Review: 243 refs.
Copper-based nanomaterials and applicationsChalcogenide Semiconductor Thin FilmsQuantum Dots Synthesis And Properties
Albert G. Nasibulin、Sergey D. Shandakov、Marina Y. Timmermans 等 4 位作者2011-12-15ChemInform
Abstract Review: 171 refs.
Graphene research and applicationsCarbon Nanotubes in CompositesElectrohydrodynamics and Fluid Dynamics
Elisey Yagodkin、Kathryn A. McGarry、Christopher J. Douglas2011-12-15ChemInform
Abstract Analytically pure title compound (IV) is obtained on a multi‐gram scale using a modified Sartori′s procedure.
Inorganic and Organometallic ChemistryPorphyrin and Phthalocyanine Chemistry
K. Devi Chandrasekhar、A. K. Das、Venimadhav, A.2011-12-15arXiv (Cornell University)
We have studied the magnetic field effect on low frequency dielectric properties of Pr0.6Ca0.4MnO3/polyvinylidene fluoride nanocomposite with 22.5% volume fraction of Pr0.6Ca0.4MnO3 nanoparticles. A strong magnetodielectric response was observed below 120 K where Pr0.6Ca0.4MnO3 nanoparticles show the magnetic phase tr…
Multiferroics and related materialsMagnetic and transport properties of perovskites and related materials
Stefano Zacchini2011-12-15ChemInform
Abstract Review: ca. 200 refs.
Nanomaterials for catalytic reactionsQuantum Dots Synthesis And PropertiesNanocluster Synthesis and Applications
Constantin Romanescu、Timur R. Galeev、Wei‐Li Li 等 5 位作者2011-12-15ChemInform
Abstract Co@B‐8, Ru@B‐9, Co@B8, and Ru@B9 clusters are characterized by photoelectron spectroscopy and DFT calculations.
Boron and Carbon Nanomaterials ResearchOrganoboron and organosilicon chemistryMXene and MAX Phase Materials
Ulf Betke、Mathias S. Wickleder2011-12-15ChemInform
Abstract The title compounds are solvothermally prepared and structurally characterized by single crystal XRD.
Polyoxometalates: Synthesis and ApplicationsCrystal Structures and PropertiesLanthanide and Transition Metal Complexes
Yuandong Wu、Wolfgang Bensch2011-12-15ChemInform
Abstract NaCdAsS3 (I) and NaCdSbS3 (II) are prepared by reaction of a mixture of Cd, Na2S, As2S3 or Sb, and S powder in 1:2:1:4 and 1:1:1:8 molar ratios, respectively (500 °C, 4 d; 70% and 50% yield for (I) and (II), respectively).
Solid-state spectroscopy and crystallographyCrystal Structures and PropertiesChalcogenide Semiconductor Thin Films
Stefan J. Sedlmaier、Enrico Mugnaioli、Oliver Oeckler 等 5 位作者2011-12-15ChemInform
Abstract The title compound is synthesized from a mixture of SrS, OP(NH2)3, SP(NH2)3, and NH4Cl (silica glass ampule, 750 °C, 72 h).
Luminescence Properties of Advanced MaterialsChemical Synthesis and CharacterizationInorganic Chemistry and Materials
Catrin Loehnert、Tobias Stuerzer、Marcus Tegel 等 6 位作者2011-12-15ChemInform
Abstract The new arsenides Ca5Fe4.75Pt1.75As9 (I), Ca5Fe5Pt1.82As9 (II), and Ca5Fe4.35Pt2.65As9 (III) are synthesized from stoichiometric mixtures of the elements (alumina crucibles, 700—1100 °C) and characterized by single crystal and powder XRD, magnetic measurements, and DFT band structure calculations.
Inorganic Chemistry and MaterialsIron-based superconductors researchRare-earth and actinide compounds
Leroy Cronin、et al. et al.2011-12-15ChemInform
Abstract K18 [MnIII2MnII4 (μ3‐O)2(H2O)4 (SiW8O31)(SiW9O34 )(SiW10O36)]·40H2O is synthesized from an aqueous solution of K8[γ‐SiW10O36], MnCl2, and K2CO3 (pH 8.40—8.50, precise pH control by dropwise addition of K2CO3 over 40 min, 40 °C, 4 h; 35% yield).
Polyoxometalates: Synthesis and ApplicationsMetal-Organic Frameworks: Synthesis and ApplicationsAdvanced Nanomaterials in Catalysis