ChemPhysChem

Cover image for Vol. 18 Issue 14

Editor: Greta Heydenrych; Editorial Board Chairs: Christian Amatore, Michael Grätzel, Michel Orrit

Impact Factor: 3.075

ISI Journal Citation Reports © Ranking: 2016: 8/35 (Physics Atomic Molecular & Chemical); 54/145 (Chemistry Physical)

Online ISSN: 1439-7641

Associated Title(s): Advanced Materials, ChemBioChem, ChemCatChem, ChemElectroChem, ChemPhotoChem, ChemSusChem, Small

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Recently Published Articles

  1. Convection-Diffusion Layer in an “Open Space” for Local Surface Treatment and Microfabrication using a Four-Aperture Microchemical Pen

    Dr. Sifeng Mao, Yong Zhang, Weifei Zhang, Dr. Hulie Zeng, Prof. Hizuru Nakajima, Prof. Jin-Ming Lin and Prof. Katsumi Uchiyama

    Version of Record online: 27 JUL 2017 | DOI: 10.1002/cphc.201700577

    Thumbnail image of graphical abstract

    Pen pals: A novel method is proposed to produce a stable convection-diffusion layer for use in microreactions and in microfabrication in an “open space” by using a four-aperture microchemical pen. The microchemical pen developed in this study exhibits excellent controllability and stability. The pen is used to produce a uniform pattern line and a pattern line with width gradients.

  2. Experimental Realization of High Quality Biochemical XOR Gate

    Evgeny Katz, Yaroslav Filipov, Sergii Domanskyi, Mackenna L Wood, Maria Gamella and Vladimir Privman

    Accepted manuscript online: 26 JUL 2017 04:26AM EST | DOI: 10.1002/cphc.201700705

  3. Insights into the Hydrogen Atom Transfer of the Blue Aroxyl

    Anne-Marie Kelterer, Josua Bächle, Marijana Markovic and Günter Grampp

    Accepted manuscript online: 26 JUL 2017 04:25AM EST | DOI: 10.1002/cphc.201700603

  4. Ferromagnetism and Half-Metallicity in Atomically Thin Holey Nitrogenated Graphene Based Systems

    Indrani Choudhuri and Dr. Biswarup Pathak

    Version of Record online: 26 JUL 2017 | DOI: 10.1002/cphc.201700633

    Thumbnail image of graphical abstract

    Holey doped graphene: By using density functional theoretical (DFT) calculations, C-doped holey nitrogenated graphene based systems were studied for possible spintronic devices. Ferromagnetism is observed in all C-doped systems and strong half-metallicity is observed after achieving a particular C-doping concentration (16.67 %) in C2N. The presence of half-metallicity can be explained by the unsaturation on the doped C atom.

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