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Search for "bromotrimethylsilane" in Full Text gives 8 result(s) in Beilstein Journal of Organic Chemistry.

Synthesis of ether lipids: natural compounds and analogues

  • Marco Antônio G. B. Gomes,
  • Alicia Bauduin,
  • Chloé Le Roux,
  • Romain Fouinneteau,
  • Wilfried Berthe,
  • Mathieu Berchel,
  • Hélène Couthon and
  • Paul-Alain Jaffrès

Beilstein J. Org. Chem. 2023, 19, 1299–1369, doi:10.3762/bjoc.19.96

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Published 08 Sep 2023

The McKenna reaction – avoiding side reactions in phosphonate deprotection

  • Katarzyna Justyna,
  • Joanna Małolepsza,
  • Damian Kusy,
  • Waldemar Maniukiewicz and
  • Katarzyna M. Błażewska

Beilstein J. Org. Chem. 2020, 16, 1436–1446, doi:10.3762/bjoc.16.119

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  • University of Technology, Zeromskiego St. 116, 90-924 Lodz, Poland 10.3762/bjoc.16.119 Abstract The McKenna reaction is a well-known and popular method for the efficient and mild synthesis of organophosphorus acids. Bromotrimethylsilane (BTMS) is the main reagent in this reaction, which transforms dialkyl
  • . Keywords: bromotrimethylsilane; McKenna reaction; organophosphorus acid; oxazole; phosphonate ester; Introduction The McKenna reaction is a tool for the synthesis of organophosphorus acids from their esters and known for over 40 years [1][2]. The importance of this class of compounds is widely recognized
  • ester [9], which is cleaved in the second step, upon solvolysis, forming the final product (Scheme 1). Bromotrimethylsilane (BTMS) is the main reagent in this reaction and is also known for its ability to cleave lactones, epoxides, acetals, and ethers [10]. BTMS also acted as a brominating agent and
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Published 23 Jun 2020

N-(1-Phenylethyl)aziridine-2-carboxylate esters in the synthesis of biologically relevant compounds

  • Iwona E. Głowacka,
  • Aleksandra Trocha,
  • Andrzej E. Wróblewski and
  • Dorota G. Piotrowska

Beilstein J. Org. Chem. 2019, 15, 1722–1757, doi:10.3762/bjoc.15.168

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  • group was acquired as shown earlier to provide (2S,3R)-92a and (2S,3R)-92b as N-Boc derivatives after N-debenzylation. Analogues (2S,3R)-89a (DS-SG-44) and (2S,3R)-89b (DS-SG-45) were formed after a regioselective phosphorylation and final treatment with bromotrimethylsilane. DS-SG-44 emerged as an
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Published 23 Jul 2019

Syntheses and chemical properties of β-nicotinamide riboside and its analogues and derivatives

  • Mikhail V. Makarov and
  • Marie E. Migaud

Beilstein J. Org. Chem. 2019, 15, 401–430, doi:10.3762/bjoc.15.36

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  • β/α mixture was obtained when 2a was reacted with neat bromotrimethylsilane at room temperature. Bromination of 2b yielded a 10:1 β/α mixture of the anomeric bromide 7b [27]. The reaction between Nam (1a) and the bromide 7a was carried out in liquid SO2 and proceeded in high yields with the
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Published 13 Feb 2019

Selective carboxylation of reactive benzylic C–H bonds by a hypervalent iodine(III)/inorganic bromide oxidation system

  • Toshifumi Dohi,
  • Shohei Ueda,
  • Kosuke Iwasaki,
  • Yusuke Tsunoda,
  • Koji Morimoto and
  • Yasuyuki Kita

Beilstein J. Org. Chem. 2018, 14, 1087–1094, doi:10.3762/bjoc.14.94

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  • bromide [52] afforded modest yields of the carboxylation product 2a (Table 1, entry 1). Interestingly, a dramatic influence was observed when altering the bromide source to other types; the use of lithium bromide or organic bromides, e.g., bromotrimethylsilane and tetraethylammonium bromide, instead of
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Published 16 May 2018

Phosphonic acid: preparation and applications

  • Charlotte M. Sevrain,
  • Mathieu Berchel,
  • Hélène Couthon and
  • Paul-Alain Jaffrès

Beilstein J. Org. Chem. 2017, 13, 2186–2213, doi:10.3762/bjoc.13.219

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  • group simultaneously to the formation of the P–C bond, are also surveyed. Among all these methods, the dealkylation of dialkyl phosphonates under either acidic conditions (HCl) or using the McKenna procedure (a two-step reaction that makes use of bromotrimethylsilane followed by methanolysis) constitute
  • the best methods to prepare phosphonic acids. Keywords: bromotrimethylsilane; hydrolysis; McKenna’s reaction; phosphonate; phosphonic acid; Review 1. Introduction Phosphonic acid is a functional group featuring two hydroxy moieties, one P=O double bond and one P–C bond. This functional group was
  • method – use of bromotrimethylsilane As reported above, the hydrolysis in acidic media requires harsh conditions (most of the time concentrated HCl solution in water at reflux) that finally limit its application when the molecules possess sensitive functional groups. The need of a milder method to
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Published 20 Oct 2017

Synthesis of medronic acid monoesters and their purification by high-performance countercurrent chromatography or by hydroxyapatite

  • Elina Puljula,
  • Jouko Vepsäläinen and
  • Petri A. Turhanen

Beilstein J. Org. Chem. 2016, 12, 2145–2149, doi:10.3762/bjoc.12.204

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  • with relatively high yields (60–78%). The three methyl ester groups were removed with bromotrimethylsilane at low temperature (<0 °C). The removal of the methylesters by silylation was found not to be fully specific and it led always to the silylation of small amounts of the alkyl ester, despite the
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Published 07 Oct 2016

Pyrrolidine nucleotide analogs with a tunable conformation

  • Lenka Poštová Slavětínská,
  • Dominik Rejman and
  • Radek Pohl

Beilstein J. Org. Chem. 2014, 10, 1967–1980, doi:10.3762/bjoc.10.205

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  • 18a,b was obtained in a pure form by chromatography on silica gel using a linear gradient of H1 in ethyl acetate. The intermediate 18a,b (1 mmol) was dissolved in acetonitrile (10 mL) and bromotrimethylsilane (5 mmol) was added under argon atmosphere. The reaction mixture was stirred overnight at room
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Published 22 Aug 2014
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