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Search for "bromination" in Full Text gives 204 result(s) in Beilstein Journal of Organic Chemistry. Showing first 200.

Iodine(III)-mediated halogenations of acyclic monoterpenoids

  • Laure Peilleron,
  • Tatyana D. Grayfer,
  • Joëlle Dubois,
  • Robert H. Dodd and
  • Kevin Cariou

Beilstein J. Org. Chem. 2018, 14, 1103–1111, doi:10.3762/bjoc.14.96

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  • our previous study on the bromination of enamides [11]. Thus, using a slight excess of DIB along with a two-fold amount of lithium bromide at 0 °C in dry acetonitrile rapidly yielded dibromo adduct 2a in 91% yield (Table 1, entry 1). Switching the reaction conditions to bromo(trifluoro)acetoxylation
  • transformations (dibromination, bromo(trifluoro)acetoxylation, bromohydroxylation, iodo(trifluoro)acetoxylation and ene-type chlorination) which were applied to substrates 1b–e in order to explore their scope. Bromination Dibromination Application of the dibromination protocol to neryl acetate (1b) proceeded
  • did isolate dibromo adduct 2a but only with 47% yield and we also observed the formation of various byproducts such as ene-bromination adduct 6a’ (Scheme 7b) [27]. Moreover, for the iodination of enamides using the PIFA/KI combination we had already shown that the observed reactivity is more akin to
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Published 18 May 2018

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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  • bisacetoxy bromate(I) [73], respectively, rather than the desired bromo radical. As a result, bromination at the aromatic ring of substrate 1a occurred when LiBr was used (Table 1, entry 2), while no reaction was observed in the other two trials using organic bromides (Table 1, entries 3 and 4). At the
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Published 16 May 2018

Bromide-assisted chemoselective Heck reaction of 3-bromoindazoles under high-speed ball-milling conditions: synthesis of axitinib

  • Jingbo Yu,
  • Zikun Hong,
  • Xinjie Yang,
  • Yu Jiang,
  • Zhijiang Jiang and
  • Weike Su

Beilstein J. Org. Chem. 2018, 14, 786–795, doi:10.3762/bjoc.14.66

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  • broad utility of this method, a concise synthesis of axitinib, eutherapeutic drug for the treatment of renal cell carcinoma, was undertaken (Scheme 6). The reaction started from commercially available 6-bromo-1H-indazole (5), bromination of the 3-position and N-protection gave 3,6-dibromo-1-(tetrahydro
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Published 06 Apr 2018

Palladium-catalyzed ortho-halogenations of acetanilides with N-halosuccinimides via direct sp2 C–H bond activation in ball mills

  • Zi Liu,
  • Hui Xu and
  • Guan-Wu Wang

Beilstein J. Org. Chem. 2018, 14, 430–435, doi:10.3762/bjoc.14.31

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  • ][24][25][26][27][28]. A few mechanochemical ortho-C–H bond activation reactions under the catalysis of rhodium and palladium salts have been reported [29][30][31][32][33][34][35][36][37][38]. Hernández and Bolm reported the rhodium-catalyzed bromination and iodination of 2-phenylpyridine using N
  • ], we have independently investigated the solvent-free ortho-iodination of acetanilides under ball-milling conditions [45]. In addition, the current reaction can be extended to ortho-bromination and ortho-chlorination by using the corresponding N-halosuccinimides. Herein, we report these regioselective
  • N-halosuccinimides. The influence of the milling frequency on the reaction of 1a with NIS. Palladium-catalyzed ortho-iodination of 1a in toluene. Plausible mechanism. Palladium-catalyzed ortho-bromination and chlorination of 1a in a ball mill. Optimization of the reaction conditions.a Substrate
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Published 16 Feb 2018

Reactivity of bromoselenophenes in palladium-catalyzed direct arylations

  • Aymen Skhiri,
  • Ridha Ben Salem,
  • Jean-François Soulé and
  • Henri Doucet

Beilstein J. Org. Chem. 2017, 13, 2862–2868, doi:10.3762/bjoc.13.278

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  • employed to prepare 2-heteroarylated selenophenes; whereas, 2,5-dibromoselenophene generally gave 2,5-di(heteroarylated) selenophenes in high yields using both thiazole and thiophene derivatives. Moreover, sequential catalytic C2 heteroarylation, bromination, catalytic C5 arylation reactions allowed the
  • 2,5-dibromoselenophene and an excess of 1-methylpyrrole, the expected 2,5-diarylated selenophene 14 was obtained in 81% yield. Finally, we show a sequential transformation leading to 2-aryl-5-(heteroaryl)selenophenes in three steps from commercially available compounds (Scheme 4). Bromination at the
  • selenophenes in high yields. We also described that the sequential catalytic C2-arylation, bromination, and catalytic C5-arylation of selenophene provides the controled double (hetero)arylation at the C2 and C5 positions of selenophene in good yields. Experimental General procedure for palladium-catalyzed
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Published 22 Dec 2017

Reagent-controlled regiodivergent intermolecular cyclization of 2-aminobenzothiazoles with β-ketoesters and β-ketoamides

  • Irwan Iskandar Roslan,
  • Kian-Hong Ng,
  • Gaik-Khuan Chuah and
  • Stephan Jaenicke

Beilstein J. Org. Chem. 2017, 13, 2739–2750, doi:10.3762/bjoc.13.270

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  • bromination of the α-carbon using CBrCl3 as the Br source. This in situ halogenation strategy has been employed for the synthesis of quinoxalines [23], oxazoles [24][25], pyrido[1,2-a]benzimidazoles [26], imidazo[1,2-a]pyridines [27][28][29][30], thiazoles [31][32] and benzothiazoles [33][34]. With weak
  • bicarbonate bases, direct bromination of the α-carbon does not occur. Instead, the Br is shuttled to the α-carbon by its coupling partner. With this tandem bromination and cyclization strategy, there is no need to presynthesize substrates, thus reducing the number of synthetic steps, time, chemicals and
  • wastes. Here we describe the extension of this α-bromination shuttle system to 2-aminobenzothiazoles as substrates to synthesize benzo[d]imidazo[2,1-b]thiazoles. The benzo[d]imidazo[2,1-b]thiazole backbone is found in many bioactive molecules and pharmaceutical compounds as evident by its use as
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Published 18 Dec 2017

Vinylphosphonium and 2-aminovinylphosphonium salts – preparation and applications in organic synthesis

  • Anna Kuźnik,
  • Roman Mazurkiewicz and
  • Beata Fryczkowska

Beilstein J. Org. Chem. 2017, 13, 2710–2738, doi:10.3762/bjoc.13.269

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  • triphenylphosphine with 1-bromoethylbenzene. The resulting phosphonium salt 11 was then deprotonated to the corresponding ylide 12, which in the last step was subjected to bromination to give the expected α-bromoethylphosphonium bromide 13 [10]. 1.3. Peterson olefination of α-trimethylsilylphosphonium ylides with
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Published 15 Dec 2017

Structure–property relationships and third-order nonlinearities in diketopyrrolopyrrole based D–π–A–π–D molecules

  • Jan Podlesný,
  • Lenka Dokládalová,
  • Oldřich Pytela,
  • Adam Urbanec,
  • Milan Klikar,
  • Numan Almonasy,
  • Tomáš Mikysek,
  • Jaroslav Jedryka,
  • Iwan V. Kityk and
  • Filip Bureš

Beilstein J. Org. Chem. 2017, 13, 2374–2384, doi:10.3762/bjoc.13.235

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  • significantly increased solubility [32]. It should be noted that other alkylating reagents, bases, and solvents provided the desired products with much lower yield and purity. Subsequent treatment of 7 with N-bromosuccinimide (NBS) smoothly afforded dibromo derivative 8 with a high yield of 93%. Bromination of
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Published 08 Nov 2017

Diosgenyl 2-amino-2-deoxy-β-D-galactopyranoside: synthesis, derivatives and antimicrobial activity

  • Henryk Myszka,
  • Patrycja Sokołowska,
  • Agnieszka Cieślińska,
  • Andrzej Nowacki,
  • Maciej Jaśkiewicz,
  • Wojciech Kamysz and
  • Beata Liberek

Beilstein J. Org. Chem. 2017, 13, 2310–2315, doi:10.3762/bjoc.13.227

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  • with acetic anhydride to give fully protected galactose 1 as an anomeric mixture. The α and β anomers (3:7 molar ratio) were identified by NMR. To synthesize bromide 2, we used TiBr4 as a bromination agent. Bromide 2 was obtained as a mixture of α and β anomers (1:4 molar ratio) and was used directly
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Published 01 Nov 2017

Solid-state mechanochemical ω-functionalization of poly(ethylene glycol)

  • Michael Y. Malca,
  • Pierre-Olivier Ferko,
  • Tomislav Friščić and
  • Audrey Moores

Beilstein J. Org. Chem. 2017, 13, 1963–1968, doi:10.3762/bjoc.13.191

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  • PEG with tosyl, bromide, thiol, carboxylic acid or amine functionalities in good to quantitative yields and with no polymer chain oligomerization, proving the versatility of the method. Keywords: amination; bromination; carboxylation; mechanochemistry; poly(ethylene glycol); solid state; thiolation
  • ). 2D-HSQC was performed to validate terminal bromo functionality showing a cross-peak at 1H, 13C = 3.45 ppm, 30.10 ppm (Figure S3, Supporting Information File 1). These results are exciting given that PEG bromination is often performed under harsh conditions either via radical intermediates or using
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Published 18 Sep 2017

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

Graphical Abstract
  • significant in organic synthesis because aryl halides are important synthons for the synthesis of many natural and non-natural products [93][94]. In 2005, Rahman and co-workers reported a pioneering solid state benzylic bromination of diquinoline derivatives via N-bromosuccinimide (NBS) [95]. In 2012, Wang
  • and co-workers reported bromination of phenol derivatives, chalcones, 1,3-dicarbonyl compounds using NaBr as bromine source and oxone as oxidant under ball-milling conditions [96]. Within 1 h they could isolate more than 90% of mono or poly-brominated products of phenol and 1,3-dicarbonyl compounds
  • (Scheme 23). α,β-Unsaturated carbonyl compounds could also undergo a trans-bromination reaction efficiently within 40 min. Following to Wang’s report, Stolle and co-workers also reported a similar method of aryl bromination and chlorination using NaBr and NaCl, respectively, in the presence of oxidizing
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Published 11 Sep 2017

Chiral phase-transfer catalysis in the asymmetric α-heterofunctionalization of prochiral nucleophiles

  • Johannes Schörgenhumer,
  • Maximilian Tiffner and
  • Mario Waser

Beilstein J. Org. Chem. 2017, 13, 1753–1769, doi:10.3762/bjoc.13.170

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  • derivative D2 performs best for this purpose, even with rather low catalyst loadings, but it has to be admitted that in general the enantioselectivities are lower than in the two other case studies shown in Scheme 6 [92]. α-Bromination and α-iodination reactions Asymmetric α-bromination and α-iodination
  • opinion this field still requires further improvements. By looking for example on the difficulties in achieving high selectivities for asymmetric α-bromination or α-iodination reactions, it becomes clear that new methods are urgently required. Another application that may become of future interest could
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Published 22 Aug 2017

The chemistry and biology of mycolactones

  • Matthias Gehringer and
  • Karl-Heinz Altmann

Beilstein J. Org. Chem. 2017, 13, 1596–1660, doi:10.3762/bjoc.13.159

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Published 11 Aug 2017

Bifunctional organocatalysts for the asymmetric synthesis of axially chiral benzamides

  • Ryota Miyaji,
  • Yuuki Wada,
  • Akira Matsumoto,
  • Keisuke Asano and
  • Seijiro Matsubara

Beilstein J. Org. Chem. 2017, 13, 1518–1523, doi:10.3762/bjoc.13.151

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  • functional groups in a chiral molecular skeleton were applied to the enantioselective synthesis of axially chiral benzamides via aromatic electrophilic bromination. The results demonstrate the versatility of bifunctional organocatalysts for the enantioselective construction of axially chiral compounds
  • axial chirality [36][37]. Thus, we assumed that this method could be further applied to the enantioselective synthesis of a range of axially chiral compounds. In this study, we present the enantioselective synthesis of 3-hydroxybenzamides via aromatic electrophilic bromination [28][29]. The 3
  • material was recovered (see Supporting Information File 1 for details). These results imply that the first bromination, occurring at the ortho-position of the axis (probably at the 2-position), is the enantiodetermining step of the reaction. Moreover, once one of the ortho-positions is brominated
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Published 02 Aug 2017

Synthesis of the heterocyclic core of the D-series GE2270

  • Christophe Berini,
  • Thibaut Martin,
  • Pierrik Lassalas,
  • Francis Marsais,
  • Christine Baudequin and
  • Christophe Hoarau

Beilstein J. Org. Chem. 2017, 13, 1407–1412, doi:10.3762/bjoc.13.137

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  • as readily available starting material. Keywords: antibiotic; bromination; BSC; C–H arylation; cross-coupling; Hantzsch synthesis; thiopeptide; Introduction Thiopeptide antibiotics are a class of peptide-derived macrocycles which contain many thiazole and thiazoline units, with almost 90 structures
  • with a sophisticated tris-1,3-diazole, judiciously prepared through direct C–H arylation method, to synthesize the trithiazolylpyridine intermediate (Figure 1). The latter was then transformed to heterocycle core of GE2270 by adding a final bromination/Hantzsch sequence to build the last 2,4
  • of GE2270 was achieved by adding a final bromination/Hantzsch thiazole synthesis to build the adequate 2,4’-bithiazole appendage. Results and Discussion Our first investigations were directed towards the 6-chloro-5-thiazolylpicolinate ester 4 in multi-gram amounts. We found that our previously
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Published 17 Jul 2017

Nitration of 5,11-dihydroindolo[3,2-b]carbazoles and synthetic applications of their nitro-substituted derivatives

  • Roman A. Irgashev,
  • Nikita A. Kazin,
  • Gennady L. Rusinov and
  • Valery N. Charushin

Beilstein J. Org. Chem. 2017, 13, 1396–1406, doi:10.3762/bjoc.13.136

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  • reduction of 6,12-dinitro derivatives under similar reaction conditions has been accompanied by denitrohydrogenation of the latter compounds into 6,12-unsubstituted indolo[3,2-b]carbazoles. Formylation of 6,12-dinitro derivatives has proved to occur only at C-2, while bromination of these compounds has
  • obtained 2,8-bis(RCO)-substituted derivatives as building blocks for the synthesis of more complicated ICZ-containing compounds [42][43][44]. In addition, other research groups have previously reported convenient methods for C12-formylation, azo-coupling, bromination and chlorination of 6-mono-substituted
  • ICZs [37], as well as C2- and C2,8-bromination of 6,12-disubstituted ICZs [23][38]. Bromo-containing ICZ derivatives have also been involved in further lithiation and metal-catalyzed cross-coupling reactions. Herein, we describe an effective protocol for nitration of 5,11-dihydroindolo[3,2-b]carbazoles
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Published 14 Jul 2017

Regioselective (thio)carbamoylation of 2,7-di-tert-butylpyrene at the 1-position with iso(thio)cyanates

  • Anna Wrona-Piotrowicz,
  • Marzena Witalewska,
  • Janusz Zakrzewski and
  • Anna Makal

Beilstein J. Org. Chem. 2017, 13, 1032–1038, doi:10.3762/bjoc.13.102

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  • has been reported that nitration and bromination of 2 take place at the 1-position (however, the bromine atom in 1-bromopyrene can migrate into the 4-position in the presence of AlCl3) [8][9], whereas Friedel–Crafts acylation and Vilsmeier formylation take place at the 4-position [10]. We recently
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Published 29 May 2017

Molecular-level architectural design using benzothiadiazole-based polymers for photovoltaic applications

  • Vinila N. Viswanathan,
  • Arun D. Rao,
  • Upendra K. Pandey,
  • Arul Varman Kesavan and
  • Praveen C. Ramamurthy

Beilstein J. Org. Chem. 2017, 13, 863–873, doi:10.3762/bjoc.13.87

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  • impurities and subsequently brominated using N-bromosuccinimide to produce the desired monomer M1. The synthesis of fluorinated monomer M2 started from 1,2-difluorobenzene. However, the direct bromination of this compound in the 1,4-position is hindered due to the electronegative fluorine substituents. Hence
  • , 1,2-difluorobenzene was reacted with trimethylsilyl chloride in the presence of lithium diisopropylamide to afford the 1,4-disilylated intermediate 4 and bromination of the latter compound in neat bromine afforded the desired 1,4-dibromo-2,3-difluorobenzene (5). Nitration of 5 by treatment with fuming
  • stannylated thiophene, followed by bromination using NBS. For the synthesis of monomer M3, the required thienothiophene substrate 10 was prepared by the butyllithium-mediated reaction of thieno[3,2-b]thiophene with chlorotrimethylstannane. The latter compound was then coupled with benzothiadiazole 2 affording
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Published 10 May 2017

N-Propargylamines: versatile building blocks in the construction of thiazole cores

  • S. Arshadi,
  • E. Vessally,
  • L. Edjlali,
  • R. Hosseinzadeh-Khanmiri and
  • E. Ghorbani-Kalhor

Beilstein J. Org. Chem. 2017, 13, 625–638, doi:10.3762/bjoc.13.61

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  • -workers developed the synthesis of 5-(dibromomethyl)thiazole derivatives 44 by treatment of N-propargyl thioamides 43 with bromine in an ionic liquid (1-butyl-3-methylimidazolium hexafluorophosphate). Mechanistically, the reaction involves: i) bromination of triple bond of thioamide 43 which resulted in a
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Published 30 Mar 2017

Novel β-cyclodextrin–eosin conjugates

  • Gábor Benkovics,
  • Damien Afonso,
  • András Darcsi,
  • Szabolcs Béni,
  • Sabrina Conoci,
  • Éva Fenyvesi,
  • Lajos Szente,
  • Milo Malanga and
  • Salvatore Sortino

Beilstein J. Org. Chem. 2017, 13, 543–551, doi:10.3762/bjoc.13.52

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  • in ethanol in the presence of NBS (Figure 1). The detailed description of the syntheses is reported in Supporting Information File 1. The synthesis of EoB (4) was performed in two steps: first, dibromofluorescein (3) was synthesized through partial bromination of 1 with NBS in acetic acid (Figure 1
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Published 15 Mar 2017

Brønsted acid-mediated cyclization–dehydrosulfonylation/reduction sequences: An easy access to pyrazinoisoquinolines and pyridopyrazines

  • Ramana Sreenivasa Rao and
  • Chinnasamy Ramaraj Ramanathan

Beilstein J. Org. Chem. 2017, 13, 428–440, doi:10.3762/bjoc.13.46

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  • phenyl group was proposed to introduce at the 3-position in substituted pyrazinone via regioselective bromination followed by Suzuki coupling with phenylboronic acid. Accordingly, the bromination of 10a was successfully carried out to furnish regioisomers 12a and 12b in 82% yield upon treatment with
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Published 07 Mar 2017

Efficient access to β-vinylporphyrin derivatives via palladium cross coupling of β-bromoporphyrins with N-tosylhydrazones

  • Vinicius R. Campos,
  • Ana T. P. C. Gomes,
  • Anna C. Cunha,
  • Maria da Graça P. M. S. Neves,
  • Vitor F. Ferreira and
  • José A. S. Cavaleiro

Beilstein J. Org. Chem. 2017, 13, 195–202, doi:10.3762/bjoc.13.22

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  • substrates were prepared by following literature procedures; the halide partner by controlled bromination of 5,10,15,20-tetraphenylporphyrin (TPP) with N-bromosuccinimide followed by metallation with Zn(AcO)2 [31][32] and the tosylhydrazones 2a–c by reaction of the adequate ketones with tosylhydrazines [33
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Published 30 Jan 2017

A new protocol for the synthesis of 4,7,12,15-tetrachloro[2.2]paracyclophane

  • Donghui Pan,
  • Yanbin Wang and
  • Guomin Xiao

Beilstein J. Org. Chem. 2016, 12, 2443–2449, doi:10.3762/bjoc.12.237

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  • precursor of parylene D, from 2,5-dichloro-p-xylene. In the first bromination step, with H2O2–HBr as a bromide source, this procedure becomes organic-waste-free and organic-solvent-free and can appropriately replace the existing bromination methods. The Winberg elimination–dimerization step, using aqueous
  • sodium hydroxide solution instead of silver oxide for anion exchange, results in a significant improvement in product yield. Furthermore, four substituted [2.2]paracyclophanes were also prepared in this convenient way. Keywords: bromination; dimerization; H2O2–HBr system; paracyclophane; polymerization
  • also adopted an improved bromination process to prepare 1-(bromomethyl)-2,5-dichloro-4-methylbenzene. Traditionally, there are several disadvantages when molecular bromine is used as a brominating reagent, such as toxicity, inconvenient handling and high reactivity, which lead to unsatisfactory results
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Published 17 Nov 2016

Methylenelactide: vinyl polymerization and spatial reactivity effects

  • Judita Britner and
  • Helmut Ritter

Beilstein J. Org. Chem. 2016, 12, 2378–2389, doi:10.3762/bjoc.12.232

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  • donating (“pushing”) oxygen atom. Monomers with such substitution patterns are defined as captodative or push–pull monomers [1]. MLA was first synthesized in 1969 by Scheibelhoffer et al. through a bromination of L-lactide followed by a basic HBr elimination [2]. In 2008, the first Diels–Alder reaction
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Published 14 Nov 2016

Efficient mechanochemical synthesis of regioselective persubstituted cyclodextrins

  • Laszlo Jicsinszky,
  • Marina Caporaso,
  • Katia Martina,
  • Emanuela Calcio Gaudino and
  • Giancarlo Cravotto

Beilstein J. Org. Chem. 2016, 12, 2364–2371, doi:10.3762/bjoc.12.230

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  • the chloride has less affinity to the macrocycle. It was not possible to reproduce the literature method [14] for per-6-chloro-β-CD synthesis, but a protocol using p-toluenesulfonyl chloride under reaction conditions that were analogous to the iodination/bromination reaction resulted in the targeted
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Published 10 Nov 2016
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