Dehydrogenation, Peroxide Coupling, and Decarboxylation of Acid Molecules at Metal Surfaces
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[1] K. Kern,et al. Convergent and divergent two-dimensional coordination networks formed through substrate-activated or quenched alkynyl ligation. , 2014, Chemical communications.
[2] H. Fuchs,et al. Decarboxylative polymerization of 2,6-naphthalenedicarboxylic acid at surfaces. , 2014, Journal of the American Chemical Society.
[3] H. Fuchs,et al. Effect of metal surfaces in on-surface glaser coupling , 2013 .
[4] Ping Liu,et al. Assisted deprotonation of formic acid on Cu(111) and self-assembly of 1D chains. , 2013, Physical chemistry chemical physics : PCCP.
[5] William R. Dichtel,et al. Rationally synthesized two-dimensional polymers. , 2013, Nature chemistry.
[6] H. Fuchs,et al. Glaser coupling at metal surfaces. , 2013, Angewandte Chemie.
[7] K. Müllen,et al. From nanographene and graphene nanoribbons to graphene sheets: chemical synthesis. , 2012, Angewandte Chemie.
[8] K. Kern,et al. Highly adaptable two-dimensional metal-organic coordination networks on metal surfaces. , 2012, Journal of the American Chemical Society.
[9] J. Martín-Gago,et al. On-surface synthesis of cyclic organic molecules. , 2011, Chemical Society reviews.
[10] P. Samorí,et al. Blueprinting macromolecular electronics. , 2011, Nature chemistry.
[11] S. De Feyter,et al. Molecular and supramolecular networks on surfaces: from two-dimensional crystal engineering to reactivity. , 2009, Angewandte Chemie.
[12] J. Sakamoto,et al. Two-dimensional polymers: just a dream of synthetic chemists? , 2009, Angewandte Chemie.
[13] F. Rosei,et al. Extending Polymer Conjugation into the Second Dimension , 2009, Science.
[14] A. Gourdon,et al. On-surface covalent coupling in ultrahigh vacuum. , 2008, Angewandte Chemie.
[15] K. Kern,et al. Self-recognition and self-selection in multicomponent supramolecular coordination networks on surfaces , 2007, Proceedings of the National Academy of Sciences.
[16] K. Kern,et al. Ionic hydrogen bonds controlling two-dimensional supramolecular systems at a metal surface. , 2007, Chemistry.
[17] A. De Vita,et al. 2D supramolecular assemblies of benzene-1,3,5-triyl-tribenzoic acid: temperature-induced phase transformations and hierarchical organization with macrocyclic molecules. , 2006, Journal of the American Chemical Society.
[18] A. Seitsonen,et al. Density functional theory analysis of carboxylate-bridged diiron units in two-dimensional metal-organic grids. , 2006, Journal of the American Chemical Society.
[19] K. Kern,et al. Engineering atomic and molecular nanostructures at surfaces , 2005, Nature.
[20] K. Kern,et al. Deprotonation-Driven Phase Transformations in Terephthalic Acid Self-Assembly on Cu(100) , 2004 .
[21] Stefan J H Griessl,et al. Self-Assembly of Benzene-Dicarboxylic Acid Isomers at the Liquid Solid Interface: Steric Aspects of Hydrogen Bonding , 2004 .
[22] A. Seitsonen,et al. STM Study of Terephthalic Acid Self-Assembly on Au(111): Hydrogen-Bonded Sheets on an Inhomogeneous Substrate † , 2004 .
[23] K. Kern,et al. Towards surface-supported supramolecular architectures: tailored coordination assembly of 1,4-benzenedicarboxylate and Fe on Cu(100). , 2004, Chemistry.
[24] K. Kern,et al. Hierarchical assembly of two-dimensional homochiral nanocavity arrays. , 2003, Journal of the American Chemical Society.
[25] Klaus Kern,et al. Supramolecular Assemblies of Trimesic Acid on a Cu(100) Surface , 2002 .