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Complexes of pyrrole-derivative ligands — III: Some first transition series metal complexes of bidentate ligands☆

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TLDR
In this paper, the copper(II) and cobalt(III) complexes of pyrrole-2-aldehyde were characterized by u.v., visible, and near-i.r. spectra.
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This article is published in Journal of Inorganic and Nuclear Chemistry.The article was published on 1971-04-01. It has received 19 citations till now. The article focuses on the topics: Cobalt & Nickel.

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Citations
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Direct electrochemical synthesis of some metal chelate complexes

TL;DR: In this paper, a simple cell is used to synthesize ML2, ML3, ML4 and MOL2 complexes, where the metal is oxidised in the presence of the parent compound of the ligand (HL) in an organic solvent mixture.
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One-step synthesis of 3,5-disubstituted-2-pyridylpyrroles from the condensation of 1,3-diones and 2-(aminomethyl)pyridine.

TL;DR: A marked dependence of the regioselectivity in the reaction of unsymmetrical diones on the presence of additional aminomethylpyridine suggests that two pathways to the product pyrroles are available.
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Investigation of AlMe3, BEt3, and ZnEt2 as Co-Reagents for Low-Temperature Copper Metal ALD/Pulsed-CVD

TL;DR: In this article, the reactions of AlMe3, BEt3, and ZnEt2 with toluene solutions of the copper(II) complexes [CuL2] were investigated, and most combinations were found to deposit metal films or metal powder at 50 °C or less.
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Pyridylpyrrolides as alternatives to cyclometalated phenylpyridine ligands: synthesis and characterization of luminescent zinc and boron pyridylpyrrolide complexes †

TL;DR: In this article, the synthesis, structure and properties of six luminescent pyridylpyrrolide complexes and the first structural characterization of pyridine and pyrrole metal complexes are reported.
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Direct synthesis of palladium porphyrins from acyldipyrromethanes.

TL;DR: This methodology readily affords palladium porphyrins directly from acyldipyrromethanes and can be used with Cu(OAc)(2).H(2)O to give the copper p Morphyrin albeit in low yield.
References
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The Vibrational Spectra of Pyridine and Pyridine‐d5

TL;DR: In this paper, the spectral properties of pyridine and its derivatives were analyzed with the help of the product rule and by analogy with the fundamental frequencies of benzene and benzene-d6.
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