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12Sandra I. G. Dias, Sandra Rabaça, Isabel C. Santos, John D. Wallis and Manuel Almeida.
A unique co-crystallisation motif for bis(4-pyridyl)acetylene involving S⋯spC interactions with a fused 1,3-dithiole ring, CrystEngComm, 2010, 12, 3397. Elodie Boisselier and Didier Astruc.
Gold nanoparticles in nanomedicine: preparations, imaging, diagnostics, therapies and toxicity, Chem. Soc. Rev., 2009, 38, 1759. Lucia Carlucci, Gianfranco Ciani, Davide M. Proserpio and Silvia Rizzato.
New architectures from the self-assembly of MSO salts with bis(4-pyridyl) ligands. The first case of polycatenation involving three distinct sets of 2D polymeric (4,4)-layers parallel to a common axis, CrystEngComm, 2003, 5, 190. Benjamin J. Coe, Josephine L. Harries, James A. Harris, Bruce S. Brunschwig, Simon J. Coles, Mark E. Light and Michael B. Hursthouse.
Syntheses, spectroscopic and molecular quadratic nonlinear optical properties of dipolar ruthenium(ii) complexes of the ligand 1,2-phenylenebis(dimethylarsine), Dalton Trans., 2004, 0, 2935. Amal Akou, Carlos Bartual-Murgui, Khaldoun Abdul-Kader, Manuel Lopes, Gábor Molnár, Christophe Thibault, Christophe Vieu, Lionel Salmon and Azzedine Bousseksou.
Photonic gratings of the metal–organic framework {Fe(bpac)[Pt(CN)]} with synergetic spin transition and host–guest properties, Dalton Trans., 2013, . Suzuki et al..
Synthesis and characterization of hexaarylbenzenes with five or six different substituents enabled by programmed synthesis, Nature Chemistry, 2015 Intramolecular electron transfer in mixed-valence complexes [(NH3)5Ru-L-Ru(NH3)5]5+ (L = N2, pyz, pym, 4,4u2032-bipy, bpa), Journal of Structural Chemistry Intramolecular electron transfer in mixed-valence complexes [(NH3)5Ru-L-Ru(NH3)5]5+ (L = N2, pyz, pym, 4,4u2019-bipy, bpa), Foundations of Physics Letters Modulation of Spin-Crossover Behavior in an Elongated and Flexible Hofmann-Type Porous Coordination Polymer, Journal of Inorganic and Organometallic Polymers and Materials Quantitative assessment of intermolecular interactions by atomic force microscopy imaging using copper oxide tips, Nature Nanotechnology