Finite-Temperature Evolution of Frenkel Defects in Hybrid Perovskites: Healing and Lead-Methylammonium Antisite Pairs. [PDF]
Pensè Schone J +5 more
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Tripartite hydrogen-bonding as a driving force for high-concentration cyclization of poly(l-lactide). [PDF]
Moins S +5 more
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Co-Translational Incorporation of <i>(R)</i>- and <i>(S)</i>-β<sup>2</sup>-Hydroxy Acids <i>In Vitro</i>: A Structural and Biochemical Study on the <i>E. coli</i> Ribosome. [PDF]
Majumdar C +6 more
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A halogen bonding BODIPY-appended aza-crown ether for selective optical sensing of inorganic and organic ion-pair species. [PDF]
Wilmore JT +4 more
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Polar-to-Radical Crossover in Catalyst-Free Olefin Halo-Hydroxylamination: A Direct Route to Multifunctional Electrophilic Hydroxylamines. [PDF]
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Evaluating the protonation state of the catalytic Cys25 in cruzain cysteine protease: A target for Chagas disease. [PDF]
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Ion‐Pair Complexation with a Cavitand Receptor
Chemistry – A European Journal, 2010AbstractThe capability of resorcinarenes to bind anions within the alkyl feet at the lower rim has been exploited as the starting point for developing a new cavitand able to engulf contact ion pairs of primary ammonium salts in chlorinated solvents with association constants (Kass) in the range of 103–104 M−1. Methylene bridges were introduced into the
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Self-Assembly of Ion-Pair Complexes
Crystal Growth & Design, 2007Solid-state structures of cobalt(II) complexes of 4-methylumbelliferone-8-methyleneiminodiacetic acid (H3muia), also named Calcein Blue, are presented. Interestingly, ion-pair complexes with different solvation in cation, namely, [Co(H2O)4(CH3CN)2][Co(muia)(H2O)2]2 (1) and [Co(H2O)6][Co2(muia)2(H2O)2]·2CH3CN (2), exhibit self-assembly in one-pot ...
Wei, L.L., Vittal, J.J.
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