Search results for "Amide"
showing 10 items of 3119 documents
CCDC 1445294: Experimental Crystal Structure Determination
2016
Related Article: Francisco Fernandez-Palacio, Marco Saccone, Arri Priimagi, Giancarlo Terraneo, Tullio Pilati, Pierangelo Metrangolo, Giuseppe Resnati|2016|CrystEngComm|18|2251|doi:10.1039/C6CE00059B
CCDC 1916086: Experimental Crystal Structure Determination
2019
Related Article: María Cabrero-Antonino, Sonia Remiro-Buenamañana, Manuel Souto, Antonio A. García-Valdivia, Duane Choquesillo-Lazarte, Sergio Navalón, Antonio Rodríguez-Diéguez, Guillermo Mínguez Espallargas, Hermenegildo García|2019|Chem.Commun.|55|10932|doi:10.1039/C9CC04446A
CCDC 1916083: Experimental Crystal Structure Determination
2019
Related Article: María Cabrero-Antonino, Sonia Remiro-Buenamañana, Manuel Souto, Antonio A. García-Valdivia, Duane Choquesillo-Lazarte, Sergio Navalón, Antonio Rodríguez-Diéguez, Guillermo Mínguez Espallargas, Hermenegildo García|2019|Chem.Commun.|55|10932|doi:10.1039/C9CC04446A
CCDC 1896308: Experimental Crystal Structure Determination
2019
Related Article: Arun Pal, Santanu Chand, Joan Cano Boquera, Francesc Lloret, Jian-Bin Lin, Shyam Chand Pal, Madhab C. Das|2019|Inorg.Chem.|58|6246|doi:10.1021/acs.inorgchem.9b00471
CCDC 2217201: Experimental Crystal Structure Determination
2023
Related Article: Isabel Abánades Lázaro, Eleni C. Mazarakioti, Eduardo Andres-Garcia, Bruno J. C. Vieira, João C. Waerenborgh, Iñigo J. Vitórica-Yrezábal, Mónica Giménez-Marqués, Guillermo Mínguez Espallargas|2023|J.Mater.Chem.A|11|5320|doi:10.1039/D2TA08934C
CCDC 1432273: Experimental Crystal Structure Determination
2016
Related Article: Anna Świtlicka-Olszewska, Joanna Palion-Gazda, Tomasz Klemens, Barbara Machura, Julia Vallejo, Joan Cano, Francesc Lloret, Miguel Julve|2016|Dalton Trans.|45|10181|doi:10.1039/C6DT01160H
CCDC 1451174: Experimental Crystal Structure Determination
2017
Related Article: Thais Grancha, Jesús Ferrando-Soria, Joan Cano, Pedro Amoros , Beatriz Seoane, Jorge Gascon, Montse Bazaga-García, Enrique R. Losilla, Aurelio Cabeza, Donatella Armentano, Emilio Pardo|2016|Chem.Mater.|28|4608|doi:10.1021/acs.chemmater.6b01286
Anticancer study of heterobimetallic platinum(II)-ruthenium(II) and platinum(II)-rhodium(III) complexes with bridging dithiooxamide ligand
2019
Abstract Three heterobimetallic platinum (II)/ruthenium (II) and platinum (II)/rhodium (III) complexes, A: Pt{S–S2C2(NR)2H}{μ-S2C2(NR)2}-[Ru (p-cymene)Cl], R = isoamyl; B: Pt{S–S2C2(NR)2H}{μ-S2C2(NR)2}[Rh (phpy)2], R = isoamyl; C: [Pt{S–S2C2(NR)2H}{μ-S2C2(NR)2}-[Rh(C5Me5)Cl]], R = benzyl, were prepared from mononuclear complexes 1 and 2, 1: [Pt (H-isoamyl2DTO)2]; 2: [Pt (H-benzyl2DTO)2], DTO = dithiooxamide, by reaction of 1 or 2 with the corresponding chlorido-bridged dimers, [Rh(C5Me5)Cl (μ-Cl)]2, [Ru (p-cymene)Cl (μ-Cl)]2 or [Rh (phpy)2 (μ-Cl)]2, and then evaluated as anticancer agents for the inhibition of the three proteolytic activities of human 20S proteasome, one of the main target …
N ‐Annulated Perylene Bisimides to Bias the Differentiation of Metastable Supramolecular Assemblies into J‐ and H‐Aggregates
2020
The unique self-assembling features of N-annulated perylene bisimides (PBIs) 1 and 2 are reported. The stability of the aggregates of diester 1, in which no H-bonding interactions are operative, corroborates the significance of long-range van der Waals and dipole-dipole electrostatic interactions in the construction of stable supramolecular assemblies. The incorporation of amide functional groups within the N-annulated PBI in 2 stimulates pathway differentiation to achieve up to three J-type aggregates and a fourth H-type aggregate depending on the experimental conditions. The results presented demonstrate unprecedented levels of control over synthetic supramolecular self-assembly and the r…
Copper(II) and nickel(II) complexes of pyridylamido hexadentate ligands: chemical speciation and spectroscopic studies
2003
Abstract Two novel potentially hexadentate ligands, 1,10-(2-bis picolinamide)-4,7-diazadecane (pycdpnen) and 1,8-bis(2-picolinamide)-3,6-dioxaoctane (pycdado) have been synthesised as their hydrochloride salt; its protonation constants and the stability constants of the copper(II) and nickel(II) chelates have been determined by potentiometry. Amide groups deprotonation permits the formation of [MLH −1 ] + species in all cases, while only pycdado gives [MLH −2 ] species. The solid complexes of copper and nickel with the neutral and the deprotonated ligands have been synthesised and characterised by IR, UV–Vis and ESR spectroscopy. The amidic groups are coordinated through the oxygen atoms in…