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Search for "phosphonylation" in Full Text gives 17 result(s) in Beilstein Journal of Organic Chemistry.

Photoredox catalysis harvesting multiple photon or electrochemical energies

  • Mattia Lepori,
  • Simon Schmid and
  • Joshua P. Barham

Beilstein J. Org. Chem. 2023, 19, 1055–1145, doi:10.3762/bjoc.19.81

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Published 28 Jul 2023

Synthesis of medium and large phostams, phostones, and phostines

  • Jiaxi Xu

Beilstein J. Org. Chem. 2023, 19, 687–699, doi:10.3762/bjoc.19.50

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  • ]thiophen-3-yl)methanol (23) and benzyl allylphosphonochlordiate (24) in the presence of triethylamine in diethyl ether via phosphonylation. It underwent a RCM reaction under the catalysis of Grubbs first generation catalyst in DCM, affording 2-(4-methylphenyl)benzothiophene-fused 2-(benzyloxy)-3,6,7,8,9,10
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Published 15 May 2023

An alternative C–P cross-coupling route for the synthesis of novel V-shaped aryldiphosphonic acids

  • Stephen J. I. Shearan,
  • Enrico Andreoli and
  • Marco Taddei

Beilstein J. Org. Chem. 2022, 18, 1518–1523, doi:10.3762/bjoc.18.160

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  • order of addition of reactants to perform the transition-metal-catalyzed C–P cross-coupling reaction, often referred to as the Tavs reaction, employing NiCl2 as a pre-catalyst in the phosphonylation of aryl bromide substrates using triisopropyl phosphite. This new method was employed in the synthesis of
  • work is the phosphonylation of the commercially available bromo-substituted N-aryl precursors bis(4-bromophenyl)amine (Br2BPA), 3,6-dibromocarbazole (Br2DPC), and 4-bromo-N-(4-bromophenyl)-N-phenylaniline (Br2DPPA) (see Scheme 1). In light of using the resulting phosphonic acids as linkers for the
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Published 07 Nov 2022

Synthetic strategies of phosphonodepsipeptides

  • Jiaxi Xu

Beilstein J. Org. Chem. 2021, 17, 461–484, doi:10.3762/bjoc.17.41

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  • reviewed, including the phosphonylation of hydroxy esters with phosphonochloridates, the condensation of phosphonic monoesters and hydroxy esters, the alkylation of phosphonic monoesters with 1-(alkoxycarbonyl)alkyl halides or sulfonates, multicomponent condensation of amides, aldehydes, and
  • phosphonodepsipeptides with C-1-hydroxyalkylphosphonic acids. Keywords: alkylation; mimetic; multicomponent condensation; peptide; phosphonopeptide; phosphonodepsipeptide; phosphonylation; Introduction Both, phosphonopeptides and phosphonodepsipeptides are phosphorus analogues of peptides [1][2][3][4][5]. The
  • phosphonylation of hydroxy esters 2 with N-protected aminoalkylphosphonochloridates 3 (method I), reactions of N-protected aminoalkylphosphonic monoesters 4 with hydroxy esters 2 (method II) or with 1-(alkoxycarbonyl)alkyl halides or sulfonates 5 (method III), pseudo-four-component condensations (method IV), and
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Published 16 Feb 2021

Synthesis of 3(2)-phosphonylated thiazolo[3,2-a]oxopyrimidines

  • Ksenia I. Kaskevich,
  • Anastasia A. Babushkina,
  • Vladislav V. Gurzhiy,
  • Dmitrij M. Egorov,
  • Nataly I. Svintsitskaya and
  • Albina V. Dogadina

Beilstein J. Org. Chem. 2020, 16, 1947–1954, doi:10.3762/bjoc.16.161

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  • observed in the case of 6-trifluoromethyl-2-thiouracil that afforded 2- and 3-phosphonylated 5-oxothiazolopyrimidines in a 1:1 ratio. Keywords: chloroethynylphosphonate; heterocyclization; phosphonylated thiazolopyrimidines; phosphonylation; thiazolopyrimidine; 2-thiouracil; Introduction
  • the latter [22][23][24][25][26][27][28]. Herein, we report the synthesis of a new series of phosphonylated thiazolopyrimidines. In our studies, chloroethynylphosphonate was used as the phosphonylating agent, which allowed the formation of a thiazole ring with simultaneous phosphonylation of the latter
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Published 10 Aug 2020

Selective preparation of tetrasubstituted fluoroalkenes by fluorine-directed oxetane ring-opening reactions

  • Clément Q. Fontenelle,
  • Thibault Thierry,
  • Romain Laporte,
  • Emmanuel Pfund and
  • Thierry Lequeux

Beilstein J. Org. Chem. 2020, 16, 1936–1946, doi:10.3762/bjoc.16.160

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  • difficult to extract product 20 from water. When the reaction was performed in acetone this allowed for a simple filtration of the sodium chloride and bromide salts formed and resulted in very satisfactory yields (91–97%) after column chromatography. An Arbuzov phosphonylation was performed on the crude
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Published 07 Aug 2020

Photocatalyzed syntheses of phenanthrenes and their aza-analogues. A review

  • Alessandra Del Tito,
  • Havall Othman Abdulla,
  • Davide Ravelli,
  • Stefano Protti and
  • Maurizio Fagnoni

Beilstein J. Org. Chem. 2020, 16, 1476–1488, doi:10.3762/bjoc.16.123

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  • starting from alkylhydrazines [66]. However, a heteroatom-based radical may be used for the addition onto isonitriles as well. One such example dealt with the photoredox tandem phosphonylation/cyclization of diphenylphosphine oxides with 2-arylphenylisonitriles. Here, the sequential formation of C–P and C
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Published 25 Jun 2020

Recent developments in photoredox-catalyzed remote ortho and para C–H bond functionalizations

  • Rafia Siddiqui and
  • Rashid Ali

Beilstein J. Org. Chem. 2020, 16, 248–280, doi:10.3762/bjoc.16.26

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  • oxidation via HAT or SET/deprotonation, generates the desired product 97 (Figure 15). The oxidation of the persulfate anion generates a sulfate radical anion, which acts as an oxidant in the aromatization step. In the absence of light and photoredox catalyst, no product was obtained. C–H phosphonylation
  • : oxidant-free oxidative phosphonylation Considering the importance of phosphonylation, recently, Lei and co-workers reported a novel method for the synthesis of phosphonylated products using photoredox catalyst 2 along the cocatalyst [Co(dmgH)(dmgH2)]Cl2 [140]. Although earlier approaches showed good
  • catalyst. Proposed mechanism for the trifluoromethylation of 88. Plausible mechanism for the synthesis of substituted coumarins. Mechanism proposed for the phosphonylation reaction of 100. Plausible mechanism for the nitration of aniline derivatives via photoredox catalysis. Proposed mechanism for the
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Published 26 Feb 2020

Mechanochemical synthesis of small organic molecules

  • Tapas Kumar Achar,
  • Anima Bose and
  • Prasenjit Mal

Beilstein J. Org. Chem. 2017, 13, 1907–1931, doi:10.3762/bjoc.13.186

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  • synthesis under mechanochemical conditions. Phosphonylation of benzothiazole and thiazole derivatives were done with organophosphorus compounds using 3 equiv of Mn(OAc)3·2H2O in a mixer mill for 1.5 h. Benzothiazole or thiazole rings having electron-donating or -withdrawing groups worked efficiently under
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Published 11 Sep 2017

Multicomponent reactions: A simple and efficient route to heterocyclic phosphonates

  • Mohammad Haji

Beilstein J. Org. Chem. 2016, 12, 1269–1301, doi:10.3762/bjoc.12.121

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  • to phosphonylated heterocycles. The different applications of the Kabachnik–Fields reaction in the preparation of phosphonylated heterocycles can be classified into two major categories: a) phosphonylation of heterocyclic ketones through a classic Kabachnik–Fields reaction and b) synthesis of
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Published 21 Jun 2016

A new method for the synthesis of α-aminoalkylidenebisphosphonates and their asymmetric phosphonyl-phosphinyl and phosphonyl-phosphinoyl analogues

  • Anna Kuźnik,
  • Roman Mazurkiewicz,
  • Mirosława Grymel,
  • Katarzyna Zielińska,
  • Jakub Adamek,
  • Ewa Chmielewska,
  • Marta Bochno and
  • Sonia Kubica

Beilstein J. Org. Chem. 2015, 11, 1418–1424, doi:10.3762/bjoc.11.153

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  • Chemistry, Wrocław University of Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland 10.3762/bjoc.11.153 Abstract A convenient approach has been developed to α-aminoalkylidenebisphosphonates and their asymmetric phosphonyl-phosphinyl and phosphonyl-phosphinoyl analogues by α-phosphonylation, α
  • -(dimethylamino)methyl]dipropylphosphine oxide [(Pr)2POCH(NMe2)OEt] with diethyl phosphite in 74% yield [35]. In the present paper we report a novel method for α-phosphonylation, α-phosphinylation or α-phosphinoylation of 1-(N-acetylamino)alkylphosphonates that enables effective transformation of the starting
  • reactions enables α-phosphonylation, α-phosphinylation or α-phosphinoylation of 1-(N-acylamino)alkylphosphonates. Experimental General methods: IR spectra were measured on a FTIR spectrophotometer (ATR method). 1H and 13C NMR spectra were recorded at operating frequencies of 400 or 600 MHz and 100 MHz
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Published 13 Aug 2015

Synthesis of isoprenoid bisphosphonate ethers through C–P bond formations: Potential inhibitors of geranylgeranyl diphosphate synthase

  • Xiang Zhou,
  • Jacqueline E. Reilly,
  • Kathleen A. Loerch,
  • Raymond J. Hohl and
  • David F. Wiemer

Beilstein J. Org. Chem. 2014, 10, 1645–1650, doi:10.3762/bjoc.10.171

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  • City, Iowa 52242-1294, USA 10.3762/bjoc.10.171 Abstract A set of bisphosphonate ethers has been prepared through sequential phosphonylation and alkylation of monophosphonate ethers. After formation of the corresponding phosphonic acid salts, these compounds were tested for their ability to inhibit the
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Published 18 Jul 2014

Synthesis of fluorescent (benzyloxycarbonylamino)(aryl)methylphosphonates

  • Michał Górny vel Górniak,
  • Anna Czernicka,
  • Piotr Młynarz,
  • Waldemar Balcerzak and
  • Paweł Kafarski

Beilstein J. Org. Chem. 2014, 10, 741–745, doi:10.3762/bjoc.10.68

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  • acids and their short peptides are a class of well-established inhibitors of serine proteases [11][12]. Their mechanism of action involves phosphonylation of the active-site of these enzymes with simultaneous release of the appropriate phenol [13][14]. Therefore, the synthesis of such inhibitors
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Published 28 Mar 2014

The chemistry of amine radical cations produced by visible light photoredox catalysis

  • Jie Hu,
  • Jiang Wang,
  • Theresa H. Nguyen and
  • Nan Zheng

Beilstein J. Org. Chem. 2013, 9, 1977–2001, doi:10.3762/bjoc.9.234

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  • amides. Intramolecular interception of iminium ions by sulfonamides. Intramolecular interception of iminium ions by alcohols and sulfonamides. Intermolecular interception of iminium ions by phosphites. Photoredox-catalyzed oxidative phosphonylation by Eosin Y. Conjugated addition of α-amino radicals to
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Published 01 Oct 2013

Methylidynetrisphosphonates: Promising C1 building block for the design of phosphate mimetics

  • Vadim D. Romanenko and
  • Valery P. Kukhar

Beilstein J. Org. Chem. 2013, 9, 991–1001, doi:10.3762/bjoc.9.114

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  • , phosphonylation of the aromatic nucleus via splitting off a tert-butyl group as isobutene and formation of bisphosphonates 22 and 23 was observed. The same happened when quinone methide 21 was treated with diphenylphosphinite (Scheme 11). The primary step of this reaction, which proceeds under mild alkaline
  • conditions, is presumably a direct attack of the diphenylphosphinyl anion in 3-position, followed by the splitting off of isobutene [33][34]. Variations on the Arbuzov reaction have also been tested in the preparation of trisphosphonate 18. Thus, a phosphonylation in three steps could be performed on
  • quinone methides 17 and 19. Unexpected phosphonylation of the aromatic nucleus in reactions of quinone methides 19 and 21. Multistep synthesis of trisphosphonate 18 starting from quinone methide 25. Synthesis of hexaethyl methylidynetrisphosphonate (6) via metal-carbenoid-mediated P–H insertion reaction
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Published 24 May 2013

Highly efficient cyclosarin degradation mediated by a β-cyclodextrin derivative containing an oxime-derived substituent

  • Michael Zengerle,
  • Florian Brandhuber,
  • Christian Schneider,
  • Franz Worek,
  • Georg Reiter and
  • Stefan Kubik

Beilstein J. Org. Chem. 2011, 7, 1543–1554, doi:10.3762/bjoc.7.182

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  • the phosphonylation of this nucleophilic group, similar to the phosphonylation of the serine residue in the active site of AChE during OP-mediated inhibition of this enzyme. If the compound thus formed is hydrolytically unstable, it will be cleaved in the aqueous medium, releasing the original
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Published 22 Nov 2011

α,β-Aziridinylphosphonates by lithium amide-induced phosphonyl migration from nitrogen to carbon in terminal aziridines

  • David. M. Hodgson and
  • Zhaoqing Xu

Beilstein J. Org. Chem. 2010, 6, 978–983, doi:10.3762/bjoc.6.110

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  • 16 in good yield (Scheme 5) [40]. By analogy with a preparation of N-diphenylphosphinyl aziridines [41], subsequent one-pot N- and O-phosphonylation followed by NaH-induced ring-closure gave (S)-aziridine 1k (52%). Lithiation–rearrangement of (S)-aziridine 1k provided aziridinylphosphonate (–)-3k in
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Published 13 Oct 2010
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