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Search for "macrocyclic ligands" in Full Text gives 9 result(s) in Beilstein Journal of Organic Chemistry.

Selectivity control towards CO versus H2 for photo-driven CO2 reduction with a novel Co(II) catalyst

  • Lisa-Lou Gracia,
  • Philip Henkel,
  • Olaf Fuhr and
  • Claudia Bizzarri

Beilstein J. Org. Chem. 2023, 19, 1766–1775, doi:10.3762/bjoc.19.129

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  • advantages for tailoring new catalysts to specific reactions and optimize selectivity [22][27]. Cobalt catalysts successfully employed in CO2 reduction are mainly based on macrocyclic ligands, such as tetraazacyclodecene and its derivatives [3][28][29], porphyrins [30][31][32][33][34], or phthalocyanines [35
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Published 17 Nov 2023

Tying a knot between crown ethers and porphyrins

  • Maksym Matviyishyn and
  • Bartosz Szyszko

Beilstein J. Org. Chem. 2023, 19, 1630–1650, doi:10.3762/bjoc.19.120

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  • /electrostatic interactions [18][19][20]. Replacing oxygen atoms with other elements, such as nitrogen, sulfur, etc., alters the crown ethers' affinity toward cations, extending their role as macrocyclic ligands to transition metals [21]. One can say that in many aspects, porphyrins and crown ethers are
  • laid the ground for a whole new research area of hybrid imine-porphyrinoids [52][53][54]. Bowman-James' work provided an exciting insight into accordion porphyrins' coordination chemistry, demonstrating the tremendous potential of iminoporphyrinoids as macrocyclic ligands. Independently the Sessler
  • flexibility of macrocyclic ligands, as demonstrated by X-ray molecular structures. The helicates consisted of two metal centres, namely cobalt, manganese, or iron, each coordinated by two nitrogens and oxygen donors of the ligand. The metal centres adopted distorted octahedral geometries with slight
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Perspective
Published 27 Oct 2023

Self-assembled coordination thioether silver(I) macrocyclic complexes for homogeneous catalysis

  • Zhen Cao,
  • Aline Lacoudre,
  • Cybille Rossy and
  • Brigitte Bibal

Beilstein J. Org. Chem. 2019, 15, 2465–2472, doi:10.3762/bjoc.15.239

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  • silver(I) catalysts based on sulfur ligands were reported so far, although alkyl thioethers are soft σ-donor ligands such as crown thioethers that were largely developed as macrocyclic ligands for silver(I) [35][36][37][38][39][40][41][42][43]. Interestingly, depending on their design, these known silver
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Published 17 Oct 2019

Coordination chemistry and photoswitching of dinuclear macrocyclic cadmium-, nickel-, and zinc complexes containing azobenzene carboxylato co-ligands

  • Jennifer Klose,
  • Tobias Severin,
  • Peter Hahn,
  • Alexander Jeremies,
  • Jens Bergmann,
  • Daniel Fuhrmann,
  • Jan Griebel,
  • Bernd Abel and
  • Berthold Kersting

Beilstein J. Org. Chem. 2019, 15, 840–851, doi:10.3762/bjoc.15.81

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  • with λ = 365 nm reveals a photoisomerization of the co-ligand from the trans to the cis form. Keywords: azobenzene carboxylates; cadmium; complexes; macrocyclic ligands; nickel; zinc; Introduction The macrocyclic N6S2 donor ligand H2L is an effective dinucleating ligand that supports a large number
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Published 03 Apr 2019

Binding abilities of polyaminocyclodextrins: polarimetric investigations and biological assays

  • Marco Russo,
  • Daniele La Corte,
  • Annalisa Pisciotta,
  • Serena Riela,
  • Rosa Alduina and
  • Paolo Lo Meo

Beilstein J. Org. Chem. 2017, 13, 2751–2763, doi:10.3762/bjoc.13.271

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  • of a polynucleotide (interacting with the polycationic branches) and a further bioactive/drug molecule (included into the host cavity). The critical examination of the available literature suggests that one main drawback of this approach is the fact that the syntheses of the tailored macrocyclic
  • ligands (as pure chemical species) reported so far are lengthy and expensive, affording low overall yields. Thus, a cheaper, more straightforward alternative route would be highly desirable. Recently, we have prepared useful polyaminocyclodextrin materials (AmCDs) in high overall yields (> 90%) by simply
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Published 18 Dec 2017

Easy access to heterobimetallic complexes for medical imaging applications via microwave-enhanced cycloaddition

  • Nicolas Desbois,
  • Sandrine Pacquelet,
  • Adrien Dubois,
  • Clément Michelin and
  • Claude P. Gros

Beilstein J. Org. Chem. 2015, 11, 2202–2208, doi:10.3762/bjoc.11.239

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  • [16][17] and porphyrins as PET probes. Cu–NOTA is significantly more inert in acidic conditions compared to Cu–DOTA, which usually decomplexed within few minutes. 64Cu2+-NOTA is considered as better PET agent, with regard to its in vivo stability [18]. Porphyrins are also excellent macrocyclic ligands
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Published 17 Nov 2015

Selected synthetic strategies to cyclophanes

  • Sambasivarao Kotha,
  • Mukesh E. Shirbhate and
  • Gopalkrushna T. Waghule

Beilstein J. Org. Chem. 2015, 11, 1274–1331, doi:10.3762/bjoc.11.142

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Published 29 Jul 2015

Similarity analysis, synthesis, and bioassay of antibacterial cyclic peptidomimetics

  • Workalemahu M. Berhanu,
  • Mohamed A. Ibrahim,
  • Girinath G. Pillai,
  • Alexander A. Oliferenko,
  • Levan Khelashvili,
  • Farukh Jabeen,
  • Bushra Mirza,
  • Farzana Latif Ansari,
  • Ihsan ul-Haq,
  • Said A. El-Feky and
  • Alan R. Katritzky

Beilstein J. Org. Chem. 2012, 8, 1146–1160, doi:10.3762/bjoc.8.128

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  • and also as important structural elements. Pyridine scaffolds possess important antiviral [15], anti-inflammatory [16][17], anticonvulsant [18], antibacterial [19], and antitumor pharmacological activities [20][21]. Chiral macrocyclic ligands have found wide application in asymmetric synthesis and
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Published 24 Jul 2012

Molecular recognition. 1. Crystal structures of hexaazamacrocyclic amines containing p-xylylene spacers and their adducts with acids

  • Teresa Borowiak,
  • Grzegorz Dutkiewicz,
  • Maciej Kubicki,
  • Marek Pietraszkiewicz,
  • Agnieszka Gil and
  • Rainer Mattes

Beilstein J. Org. Chem. 2005, 1, No. 16, doi:10.1186/1860-5397-1-16

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  • secondary amine with a lesser effect produced by the spacer. As the number of methylene units increases, the basicity of the macrocyclic ligands also increases because the amino-groups lie further apart from one another [2] in comparison with 1,4,7,16,19,22-hexaaza [9.9]-p-cyclophane (hereafter 2, Scheme 1
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Published 09 Dec 2005
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