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Search for "selective fluorination" in Full Text gives 22 result(s) in Beilstein Journal of Organic Chemistry.

Cathodic generation of reactive (phenylthio)difluoromethyl species and its reactions: mechanistic aspects and synthetic applications

  • Sadanobu Iwase,
  • Shinsuke Inagi and
  • Toshio Fuchigami

Beilstein J. Org. Chem. 2022, 18, 872–880, doi:10.3762/bjoc.18.88

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  • from an aspect of green chemistry [7][8][9][10]. In this context, we have developed various electrochemical methodologies for efficient selective fluorination [11][12] and molecular conversion of organofluorine compounds to date [13][14][15][16][17][18]. We have also achieved the gem-difluorination of
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Published 20 Jul 2022

Sustainable manganese catalysis for late-stage C–H functionalization of bioactive structural motifs

  • Jongwoo Son

Beilstein J. Org. Chem. 2021, 17, 1733–1751, doi:10.3762/bjoc.17.122

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  • [24]. This manganese porphyrin catalytic system was also effective in the direct site-selective fluorination of complex steroid scaffold 3, containing 28 unactivated C–H bonds. Based on the authors’ analysis of steric and electronic factors, it was suggested that the methylene units at C2 and C3 of
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Published 26 Jul 2021

Photosensitized direct C–H fluorination and trifluoromethylation in organic synthesis

  • Shahboz Yakubov and
  • Joshua P. Barham

Beilstein J. Org. Chem. 2020, 16, 2151–2192, doi:10.3762/bjoc.16.183

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  • [201], due to the instability of the primary radical (Figure 10). The selective fluorination of C2 over C3 may be rationalized by steric effects (rather than polarity matching), which are reported for quinuclidinium radical cations [203]. A similar selectivity for the most hydridic C(sp3)–H bond was
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Published 03 Sep 2020

Synthesis of new fluorescent molecules having an aggregation-induced emission property derived from 4-fluoroisoxazoles

  • Kazuyuki Sato,
  • Akira Kawasaki,
  • Yukiko Karuo,
  • Atsushi Tarui,
  • Kentaro Kawai and
  • Masaaki Omote

Beilstein J. Org. Chem. 2020, 16, 1411–1417, doi:10.3762/bjoc.16.117

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  • heteroaromatic systems, especially those comprising two heteroatoms such as pyrazoles [28][29], isoxazoles [30], and thiazoles [31][32]. Recently, we reported the selective fluorination of isoxazoles, to give monofluorinated isoxazoles 3 or trifluorinated isoxazolines 4 in moderate to good yields (Scheme 1) [33
  • fluorinated diketone, 2-fluoro-1,3-diphenylpropane-1,3-dione (7a), the corresponding enaminoketone 8a was obtained in only low yield (Scheme 4, entry 4) and we did not attempt the conversion of 8a towards the α-fluorinated boron ketoiminate 9a. Next, we attempted the selective fluorination of 6b to obtain the
  • desired fluorinated analog 9b. However, in the synthesis of F-BKIs through the selective fluorination of the corresponding BKIs, the use of 1 equiv of Selectfluor did not give any product and performing the reaction with excess amounts of Selectfluor gave rise to the corresponding α,α-difluorinated
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Published 22 Jun 2020

SnCl4-catalyzed solvent-free acetolysis of 2,7-anhydrosialic acid derivatives

  • Kesatebrhan Haile Asressu and
  • Cheng-Chung Wang

Beilstein J. Org. Chem. 2019, 15, 2990–2999, doi:10.3762/bjoc.15.295

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  • destabilizing electron-withdrawing carboxy group flanking atom C-2 and the lack of a participating auxiliary in position C-3 of 5. Glycal 24 is widely used for α-sialylation by utilizing neighboring group participation and site-selective fluorination at C-3 [12][13][14][41]. Moreover, it is the main precursor
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Published 23 Dec 2019

Recent advances in transition-metal-catalyzed incorporation of fluorine-containing groups

  • Xiaowei Li,
  • Xiaolin Shi,
  • Xiangqian Li and
  • Dayong Shi

Beilstein J. Org. Chem. 2019, 15, 2213–2270, doi:10.3762/bjoc.15.218

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  • -selective fluorination of α-bromocarbonyl compounds using a copper/CsF catalyst system (Scheme 32). Tertiary alkyl fluorides could be generated by this fluorination through the assistance of an amide group. From the results, the catalytic cycle of this reaction includes: 1) copper salt induced generation of
  • transformation is proposed in Scheme 33 below. Notably, Cu acts as both a mediator and an oxidizer in this reaction. In the same year, Daugulis et al. [78] presented a Cu-catalyzed selective fluorination of benzoic acid derivatives and benzylamine derivatives assisted by an aminoquinoline auxiliary. With a CuI
  • orchestrated redox process, an alkoxyl radical-guided strategy for the site-selective fluorination of unactivated methylene and methine C–H bonds was published by Liu and co-workers in 2018 (Scheme 44) [91]. The fluorination of various primary, secondary, and tertiary hydroperoxides was achieved in moderate to
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Published 23 Sep 2019

Applications of organocatalysed visible-light photoredox reactions for medicinal chemistry

  • Michael K. Bogdos,
  • Emmanuel Pinard and
  • John A. Murphy

Beilstein J. Org. Chem. 2018, 14, 2035–2064, doi:10.3762/bjoc.14.179

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  • either be guided, e.g., selective fluorination of a molecule or can also follow an unselective approach, e.g., fluorination in various positions, but in either case the goal is exploration of SAR directly on a lead structure and easy diversification. In addition, LSF can explore the addition of small
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Published 03 Aug 2018

The selective electrochemical fluorination of S-alkyl benzothioate and its derivatives

  • Shunsuke Kuribayashi,
  • Tomoyuki Kurioka,
  • Shinsuke Inagi,
  • Ho-Jung Lu,
  • Biing-Jiun Uang and
  • Toshio Fuchigami

Beilstein J. Org. Chem. 2018, 14, 389–396, doi:10.3762/bjoc.14.27

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  • ; electrosynthesis; fluorobenzothiophenone; selective fluorination; Introduction Due to the interesting properties of fluorine atoms and carbon–fluorine bonds, organofluorine compounds are widely used in various fields like pharmaceutical chemistry, agrochemistry, and materials sciences [1][2]. Therefore, the
  • selective fluorination of organic compounds is highly useful for the development of novel organofluorine compounds. Although a number of fluorination reagents have been developed so far, they have still some problems, i.e., they are costly, difficult to handle, and explosive [3][4]. On the other hand
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Published 12 Feb 2018

Fluorination of some highly functionalized cycloalkanes: chemoselectivity and substrate dependence

  • Attila Márió Remete,
  • Melinda Nonn,
  • Santos Fustero,
  • Matti Haukka,
  • Ferenc Fülöp and
  • Loránd Kiss

Beilstein J. Org. Chem. 2017, 13, 2364–2371, doi:10.3762/bjoc.13.233

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  • -amino ester stereo- and regioisomers, derived from unsaturated cyclic β-amino acids is described. The nucleophilic fluorinations involving hydroxy–fluorine exchange of some highly functionalized alicyclic diol derivatives have been carried out in view of selective fluorination, investigating substrate
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Published 06 Nov 2017

Organofluorine chemistry: Difluoromethylene motifs spaced 1,3 to each other imparts facial polarity to a cyclohexane ring

  • Mathew J. Jones,
  • Ricardo Callejo,
  • Alexandra M. Z. Slawin,
  • Michael Bühl and
  • David O'Hagan

Beilstein J. Org. Chem. 2016, 12, 2823–2827, doi:10.3762/bjoc.12.281

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  • also rendered fluorine containing compounds important in the development of organic materials such as liquid crystals [8][9]. Strategic fluorination can add polarity to a molecule, however, such compounds do not generally increase in their hydrophilic capacity, thus selective fluorination leads to
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Published 22 Dec 2016

Carbon–carbon bond cleavage for Cu-mediated aromatic trifluoromethylations and pentafluoroethylations

  • Tsuyuka Sugiishi,
  • Hideki Amii,
  • Kohsuke Aikawa and
  • Koichi Mikami

Beilstein J. Org. Chem. 2015, 11, 2661–2670, doi:10.3762/bjoc.11.286

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  • , the research activity on selective fluorination and trifluoromethylation has reached a mature state. The progress in fluoroalkylation of organic compounds could be accelerated by the use of fluoroalkylating reagents, which are inexpensive and easy to handle. Perfluoroalkyl carboxylic acid derivatives
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Published 18 Dec 2015

C–H bond halogenation catalyzed or mediated by copper: an overview

  • Wenyan Hao and
  • Yunyun Liu

Beilstein J. Org. Chem. 2015, 11, 2132–2144, doi:10.3762/bjoc.11.230

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  • a catalytic system consisting of (BPMED)CuI (copper(I) bisimine complex), N-hydroxyphthalimide (NHPI), KB(C6F5)4 and KI. The protocol allowed the selective fluorination of various substrates, including cycloalkanes and benzylic compounds using commercially available Selectfluor as fluorine source
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Published 09 Nov 2015
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  • , selective fluorination of organic compounds is becoming significantly important. Although the selective fluorination has been extensively studied, highly efficient and safe fluorination methods are still demanded [7][8]. With these facts in mind, we have developed a selective electrochemical fluorination
  • ][17][18][19][20]. More than 20 years ago, we reported the first successful example of the electrochemical selective fluorination of heteroatom-containing compounds such as α-(phenylthio)ester and its analogues as shown in Scheme 1 [21][22]. Furthermore, anodic fluorodesulfurization of dithioacetals
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Published 19 Jan 2015

Syntheses of fluorooxindole and 2-fluoro-2-arylacetic acid derivatives from diethyl 2-fluoromalonate ester

  • Antal Harsanyi,
  • Graham Sandford,
  • Dmitri S. Yufit and
  • Judith A.K. Howard

Beilstein J. Org. Chem. 2014, 10, 1213–1219, doi:10.3762/bjoc.10.119

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  • processes. Keywords: fluorinated building blocks; fluoroarylacetic acid; fluoromalonate; fluorooxindole; organo-fluorine; selective fluorination; Introduction Since 1954, when Fried and Sabo observed that the incorporation of a fluorine atom into a corticosteroid derivative led to valuable enhanced
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Published 22 May 2014

Flow microreactor synthesis in organo-fluorine chemistry

  • Hideki Amii,
  • Aiichiro Nagaki and
  • Jun-ichi Yoshida

Beilstein J. Org. Chem. 2013, 9, 2793–2802, doi:10.3762/bjoc.9.314

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  • flow microreactor system, selective fluorination reactions were accomplished. For instance, fluorination of β-dicarbonyl compounds proceeds with high efficiency, whereas the use of conventional macrobatch systems suffered from low conversion [27][28]. Since then, direct fluorination processes using
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Published 05 Dec 2013

Stereoselectively fluorinated N-heterocycles: a brief survey

  • Xiang-Guo Hu and
  • Luke Hunter

Beilstein J. Org. Chem. 2013, 9, 2696–2708, doi:10.3762/bjoc.9.306

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  • enantiomer of β-lactam 4b remained intact. The net result was that a fluorinated stereocentre was rapidly constructed, with defined absolute configuration, within a nitrogen heterocycle. Conclusion When the concept of selective fluorination is applied in the context of N-heterocycles, the resulting molecules
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Published 29 Nov 2013

Multigramme synthesis and asymmetric dihydroxylation of a 4-fluorobut-2E-enoate

  • James A. B. Laurenson,
  • John A. Parkinson,
  • Jonathan M. Percy,
  • Giuseppe Rinaudo and
  • Ricard Roig

Beilstein J. Org. Chem. 2013, 9, 2660–2668, doi:10.3762/bjoc.9.301

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  • d-chloroform/diisopropyl tartrate showed distinct baseline separated signals for different enantiomers. Keywords: asymmetric; dihydroxylation; ee determination; fluorination; fluorosugars; organo-fluorine; Introduction Selective fluorination can be used to make subtle but decisive modifications of
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Published 26 Nov 2013

Synthesis and crystallographic analysis of meso-2,3-difluoro-1,4-butanediol and meso-1,4-dibenzyloxy-2,3-difluorobutane

  • Bruno Linclau,
  • Leo Leung,
  • Jean Nonnenmacher and
  • Graham Tizzard

Beilstein J. Org. Chem. 2010, 6, No. 62, doi:10.3762/bjoc.6.62

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  • ; epoxide opening; gauche effect; organofluorine; vicinal difluoride; Introduction Selective fluorination of bioactive compounds is a widely employed strategy for the modification of their properties [1]. Fluorine atoms can be introduced to modulate the pKa of adjacent acidic and basic functional groups as
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Published 08 Jun 2010

The C–F bond as a conformational tool in organic and biological chemistry

  • Luke Hunter

Beilstein J. Org. Chem. 2010, 6, No. 38, doi:10.3762/bjoc.6.38

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  • properties of functional molecules to be optimised through selective fluorination chemistry. This concept has been demonstrated in diverse areas including medicine, catalysis, materials science and biotechnology. It is hoped that the examples highlighted in this review have persuaded the reader of the great
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Published 20 Apr 2010

Three step synthesis of single diastereoisomers of the vicinal trifluoro motif

  • Vincent A. Brunet,
  • Alexandra M. Z. Slawin and
  • David O'Hagan

Beilstein J. Org. Chem. 2009, 5, No. 61, doi:10.3762/bjoc.5.61

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  • diastereoisomeric series of this motif. The route is a significant improvement on an earlier six step strategy. Keywords: C–F bond; organo–fluorine chemistry; stereospecific fluorination; vicinal trifluoro motif; Introduction Selective fluorination is an important strategy for the design of performance molecules
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Published 05 Nov 2009

Themed series in organo- fluorine chemistry

  • David O'Hagan

Beilstein J. Org. Chem. 2008, 4, No. 11, doi:10.3762/bjoc.4.11

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  • practiced particularly when tuning the properties of molecules for specialist functions. Of particular prominence is the role fluorine substitution finds in pharmaceutical development [1], and selective fluorination has made a major contribution to the bioactivity of a wide range of agrochemical products [2
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Published 25 Apr 2008

Stereoselective α-fluoroamide and α-fluoro- γ-lactone synthesis by an asymmetric zwitterionic aza-Claisen rearrangement

  • Kenny Tenza,
  • Julian S. Northen,
  • David O'Hagan and
  • Alexandra M. Z. Slawin

Beilstein J. Org. Chem. 2005, 1, No. 13, doi:10.1186/1860-5397-1-13

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  • -actives of pharmaceutical interest.[15] It is well known too that selective fluorination can improve pharmacokinetics and the fluorine substituent can often modify bio-activity in an advantageous manner.[16] For example in the structural series relevant to this study the α-fluorinated-γ-lactone 5 is a key
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Published 17 Oct 2005
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