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Search for "etherification" in Full Text gives 50 result(s) in Beilstein Journal of Organic Chemistry.

Cyclodextrins permeabilize DPPC liposome membranes: a focus on cholesterol content, cyclodextrin type, and concentration

  • Ghenwa Nasr,
  • Hélène Greige-Gerges,
  • Sophie Fourmentin,
  • Abdelhamid Elaissari and
  • Nathalie Khreich

Beilstein J. Org. Chem. 2023, 19, 1570–1579, doi:10.3762/bjoc.19.115

Graphical Abstract
  • , arylation, hydroxypropylation, amination, etherification, etc.) giving rise to synthetic CD derivatives with greater water solubility [2]. Thanks to their unique structure, CDs can offer exclusive advantages by allowing the entrapment of lipophilic molecules inside their inner cavities. This inclusion
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Published 17 Oct 2023

Strategies in the synthesis of dibenzo[b,f]heteropines

  • David I. H. Maier,
  • Barend C. B. Bezuidenhoudt and
  • Charlene Marais

Beilstein J. Org. Chem. 2023, 19, 700–718, doi:10.3762/bjoc.19.51

Graphical Abstract
  • categorised according to the major or final catalytic step employed to form the 7-membered heterocycle as several synthetic methods use multiple catalytic steps. 3.1 Buchwald–Hartwig amination, etherification and thioetherification The Buchwald–Hartwig reaction gives access to arylamines, -ethers and
  • . Among these, Heck reaction conditions allowed for the coupling of aryl acrylates 50 to aryl halides 48 and 49, followed by intramolecular Pd-catalysed amination or etherification to give C-10 carboxylates of dibenzo[b,f]azepine 55 and dibenz[b,f]oxepine 54 in good yield (Scheme 11). However, no ring
  • ) cyclised products. 3.3 Ullmann-type coupling Copper-catalysed Ullmann etherification (Scheme 20) offers an alternative to SNAr and Buchwald–Hartwig etherification. Olivera et al. [61] reported a copper-catalysed Ullmann-type etherification as a key step in the synthesis of their pyrazole-fused dibenzo[b,f
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Published 22 May 2023

Combining the best of both worlds: radical-based divergent total synthesis

  • Kyriaki Gennaiou,
  • Antonios Kelesidis,
  • Maria Kourgiantaki and
  • Alexandros L. Zografos

Beilstein J. Org. Chem. 2023, 19, 1–26, doi:10.3762/bjoc.19.1

Graphical Abstract
  • 167 at 390 nm in the presence of NaHCO3 in CH3CN/t-BuOH, 5:1 to provide 168 in 55% yield (Scheme 14) [91]. Alkylation of the tetracycle, followed by epimerization of the C2 center and radical deoxygenation, or alternatively SN2 etherification, provided the common scaffold 170. The latter can serve as
  • ideal diversification point to access (−)-curvulamine (171) by CBS reduction, bipolamines D (173) and E (172) by additional BH3·DMS hydroboration, and bipolamine G (174) initially by dihydroxylation of the alkene moiety with osmium tetroxide, followed by acidic etherification and reduction. Finally
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Published 02 Jan 2023

Iron-catalyzed domino coupling reactions of π-systems

  • Austin Pounder and
  • William Tam

Beilstein J. Org. Chem. 2021, 17, 2848–2893, doi:10.3762/bjoc.17.196

Graphical Abstract
  • different coupling partners, both bi- [142] and tricyclic [143] fused heterocyclic frameworks have been synthesized through iminyl radical cascade cyclization and annulation reactions. Carbooxygenation In 2017, the Bao group reported the first decarboxylative alkyl etherification of alkenes 108 with
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Published 07 Dec 2021

The ethoxycarbonyl group as both activating and protective group in N-acyl-Pictet–Spengler reactions using methoxystyrenes. A short approach to racemic 1-benzyltetrahydroisoquinoline alkaloids

  • Marco Keller,
  • Karl Sauvageot-Witzku,
  • Franz Geisslinger,
  • Nicole Urban,
  • Michael Schaefer,
  • Karin Bartel and
  • Franz Bracher

Beilstein J. Org. Chem. 2021, 17, 2716–2725, doi:10.3762/bjoc.17.183

Graphical Abstract
  • developed convenient access to phenolic benzyltetrahydroisoquinolines opens the possibility for flexible late stage etherification with various aromatic, benzylic and related residues for a comprehensive investigation of the chemical space around this pharmacophoric backbone. Experimental Materials and
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Published 05 Nov 2021

Advances in mercury(II)-salt-mediated cyclization reactions of unsaturated bonds

  • Sumana Mandal,
  • Raju D. Chaudhari and
  • Goutam Biswas

Beilstein J. Org. Chem. 2021, 17, 2348–2376, doi:10.3762/bjoc.17.153

Graphical Abstract
  • fused polycyclic ethers by the treatment of a catalytic amount of Hg(TFA)2 with suitable starting material was demonstrated by Tan et al. [89]. They had reported a Hg(II)-catalyzed intramolecular trans-etherification reaction of 2-hydroxy-1-(γ-methoxyallyl)tetrahydropyrans 118 and 120 to the
  • treatment with Hg(OTf)2. Hg(TFA)2-mediated cyclization of allene. Hg(II)-catalyzed intramolecular trans-etherification reaction of 2-hydroxy-1-(γ-methoxyallyl)tetrahydropyran derivatives. a) Cyclization of alkene derivatives by catalytic Hg(OTf)2 salts and b) mechanism of cyclization. a) Synthesis of 1,4
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Published 09 Sep 2021

On the application of 3d metals for C–H activation toward bioactive compounds: The key step for the synthesis of silver bullets

  • Renato L. Carvalho,
  • Amanda S. de Miranda,
  • Mateus P. Nunes,
  • Roberto S. Gomes,
  • Guilherme A. M. Jardim and
  • Eufrânio N. da Silva Júnior

Beilstein J. Org. Chem. 2021, 17, 1849–1938, doi:10.3762/bjoc.17.126

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Published 30 Jul 2021

Prins cyclization-mediated stereoselective synthesis of tetrahydropyrans and dihydropyrans: an inspection of twenty years

  • Asha Budakoti,
  • Pradip Kumar Mondal,
  • Prachi Verma and
  • Jagadish Khamrai

Beilstein J. Org. Chem. 2021, 17, 932–963, doi:10.3762/bjoc.17.77

Graphical Abstract
  • metathesis (RCM) [16], halo etherification [17], reductive etherification [18][19], and metal-mediated cyclization [20][21], etc. are the most frequent strategies utilized for THP ring construction (Scheme 1). Amongst all, the Prins reaction has proven as a powerful technique in the stereoselective synthesis
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Published 29 Apr 2021

Metal-free visible-light-enabled vicinal trifluoromethyl dithiolation of unactivated alkenes

  • Xiaojuan Li,
  • Qiang Zhang,
  • Weigang Zhang,
  • Jinzhu Ma,
  • Yi Wang and
  • Yi Pan

Beilstein J. Org. Chem. 2021, 17, 551–557, doi:10.3762/bjoc.17.49

Graphical Abstract
  • approaches for the trifluoromethylthio (SCF3) difunctionalization of alkenes, such as cyanation [23], etherification [24][25][26][27], amination [28][29][30], chlorination [31][32], hydrogenation [33], trifluoromethylation [34], phosphonization [35], arylation [36][37][38], trifluoromethylthiolation [39
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Published 24 Feb 2021

Design and synthesis of a bis-macrocyclic host and guests as building blocks for small molecular knots

  • Elizabeth A. Margolis,
  • Rebecca J. Keyes,
  • Stephen D. Lockey IV and
  • Edward E. Fenlon

Beilstein J. Org. Chem. 2020, 16, 2314–2321, doi:10.3762/bjoc.16.192

Graphical Abstract
  • more than twice as high and this route is more amenable to multigram scale reactions. Azido-bromide 6 can undergo both alkyne–azide click cycloaddition and etherification and the effect of the reaction order on the overall yield was explored next. The click cycloaddition was pursued first and reaction
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Published 18 Sep 2020

A review of the total syntheses of triptolide

  • Xiang Zhang,
  • Zaozao Xiao and
  • Hongtao Xu

Beilstein J. Org. Chem. 2019, 15, 1984–1995, doi:10.3762/bjoc.15.194

Graphical Abstract
  • include the regioselective dihydroxylation and etherification to introduce the C-14 hydroxy group and the construction of the butenolide moiety. Particularly, the characteristics of Li’s route are low cost, high yield (9 steps, 44% yield) and easy handling (all intermediates could be scaled up to 100
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Published 22 Aug 2019

Complexation of 2,6-helic[6]arene and its derivatives with 1,1′-dimethyl-4,4′-bipyridinium salts and protonated 4,4'-bipyridinium salts: an acid–base controllable complexation

  • Jing Li,
  • Qiang Shi,
  • Ying Han and
  • Chuan-Feng Chen

Beilstein J. Org. Chem. 2019, 15, 1795–1804, doi:10.3762/bjoc.15.173

Graphical Abstract
  • methyl-substituted derivative H2 were prepared according to previously reported methods [30]. Starting from helic[6]arene H1, helic[6]arene derivatives H3 and H4 were conveniently synthesized by etherification of H1 with bromobutane or 2-bromoethyl methyl ether, respectively, in tetrahydrofuran in the
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Published 26 Jul 2019

SO2F2-mediated transformation of 2'-hydroxyacetophenones to benzo-oxetes

  • Revathi Lekkala,
  • Ravindar Lekkala,
  • Balakrishna Moku,
  • K. P. Rakesh and
  • Hua-Li Qin

Beilstein J. Org. Chem. 2019, 15, 976–980, doi:10.3762/bjoc.15.95

Graphical Abstract
  • intramolecular etherification reaction, which is called Williamson ether synthesis (Scheme 1a). This method was first utilized to synthesize oxetanes in 1878 and has remained as general tool in the synthesis of complex oxetane-containing compounds since then [17][18][19][20]. The second strategy involves a [2
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Published 25 Apr 2019

Easy, efficient and versatile one-pot synthesis of Janus-type-substituted fullerenols

  • Marius Kunkel and
  • Sebastian Polarz

Beilstein J. Org. Chem. 2019, 15, 901–905, doi:10.3762/bjoc.15.87

Graphical Abstract
  • modified, are well known in the literature. These reactions can be achieved by esterification or etherification [20][21][22]. However, partial modifications are rare, especially when it comes to asymmetric substitutions [23][24]. Although, janus-type fullerenols at which only a part of the fullerene core
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Published 12 Apr 2019

Design, synthesis and structure of novel G-2 melamine-based dendrimers incorporating 4-(n-octyloxy)aniline as a peripheral unit

  • Cristina Morar,
  • Pedro Lameiras,
  • Attila Bende,
  • Gabriel Katona,
  • Emese Gál and
  • Mircea Darabantu

Beilstein J. Org. Chem. 2018, 14, 1704–1722, doi:10.3762/bjoc.14.145

Graphical Abstract
  • disappointment, the attempted O,O’-bis-alkylation of 1 with 1-iodooctane (Williamson etherification, Table 1, entry 1), afforded a multicomponent reaction mixture (TLC monitoring, 100% conversion of 1), from which we succeeded in isolating only G-0 chloro-dendron 2a and the O,O’,N-tris-alkylated side product 2b
  • cyanuric chloride with commercial 4-(n-octyloxy)aniline (Table 1, entry 2) gave the desired G-0 chloro-dendron 2a with excellent yield. We note the choice of several authors towards the synthesis of 4-(n-octyloxy)aniline by Williamson etherification of 4-nitrophenol or of N-acetyl-4-aminophenol
  • (paracetamol) and subsequent reduction of the nitro group [23][25][27][29] or acidolysis of the amide sequence [24][26][28]. Our expertise on the use of paracetamol under Williamson etherification conditions [42] (Scheme 1, convergent route) did not impel us in the direction of preliminary 4-(n-octyloxy
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Published 09 Jul 2018

One hundred years of benzotropone chemistry

  • Arif Dastan,
  • Haydar Kilic and
  • Nurullah Saracoglu

Beilstein J. Org. Chem. 2018, 14, 1120–1180, doi:10.3762/bjoc.14.98

Graphical Abstract
  • synthesis of 7-methoxy-7H-benzo[7]annulene (129) (Scheme 22) [128]. Reduction of 4,5-benzotropone (11) with LiAlH4 followed by etherification gave the corresponding ether 129. Treatment of the ether 129 with MeMgI afforded an approximately equal mixture of two methyl benzo[7]annulenes, 131 and 132. An
  • , McMahon's group reiterated the same protocol in their work on achieving the rearrangement of naphthylcarbene [78]. Rennhard’s group reported the formation of 2,3-benzotropone (12) from benzotropolone 176 (Scheme 32) [141][142]. After the etherification of benzotropolone 174 using isobutanol in the presence
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Published 23 May 2018

Heterogeneous Pd catalysts as emulsifiers in Pickering emulsions for integrated multistep synthesis in flow chemistry

  • Katharina Hiebler,
  • Georg J. Lichtenegger,
  • Manuel C. Maier,
  • Eun Sung Park,
  • Renie Gonzales-Groom,
  • Bernard P. Binks and
  • Heidrun Gruber-Woelfler

Beilstein J. Org. Chem. 2018, 14, 648–658, doi:10.3762/bjoc.14.52

Graphical Abstract
  • interface populated by catalyst particles. They deposited metallic Pd onto carbon nanotube–inorganic oxide hybrid nanoparticles and used them in emulsions for the hydrodeoxygenation of a phenolic compound and the hydrogenation and etherification of an aldehyde. The advantages of such a system include a high
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Published 19 Mar 2018

Synthesis of substituted Z-styrenes by Hiyama-type coupling of oxasilacycloalkenes: application to the synthesis of a 1-benzoxocane

  • James R. Vyvyan,
  • Courtney A. Engles,
  • Scott L. Bray,
  • Erik D. Wold,
  • Christopher L. Porter and
  • Mikhail O. Konev

Beilstein J. Org. Chem. 2017, 13, 2122–2127, doi:10.3762/bjoc.13.209

Graphical Abstract
  • -hydrosilylation of alkynols. One of the cross-coupling products was converted to a 1-benzoxocane, albeit in low yield, using an intramolecular Buchwald–Hartwig etherification. The cyclic ether produced contains the carbon skeleton of heliannuol A. Keywords: cross-coupling; heterocycles; hydrosilylation
  • intramolecular Buchwald–Hartwig etherification of a Z-styrene derivative to provide a conformational constraint to facilitate the formation of the eight-membered ring [37]. The presence of the alkene reduces the conformational degrees of freedom in 2, thereby partially offsetting the entropic penalty of forming
  • on the intramolecular Buchwald–Hartwig etherification [38][39][40] of bromoalcohol 15 to prepare eight-membered cyclic ether 24 (Table 2). The use of Pd(II) catalyst precursors with BINAP ligands and carbonate bases in toluene [38][39] was ineffective, returning significant amounts of unreacted
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Published 11 Oct 2017

A concise and practical stereoselective synthesis of ipragliflozin L-proline

  • Shuai Ma,
  • Zhenren Liu,
  • Jing Pan,
  • Shunli Zhang and
  • Weicheng Zhou

Beilstein J. Org. Chem. 2017, 13, 1064–1070, doi:10.3762/bjoc.13.105

Graphical Abstract
  • -selectivity [9][10]. This approach included six steps such as addition, methyl etherification, acetylation, reduction, deprotection and cocrystallization with L-proline to get 1 with a total yield of 32.89%. The subsequent improvement reported included the replacement of aryllithium by aryl Grignard reagents
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Published 01 Jun 2017

Continuous N-alkylation reactions of amino alcohols using γ-Al2O3 and supercritical CO2: unexpected formation of cyclic ureas and urethanes by reaction with CO2

  • Emilia S. Streng,
  • Darren S. Lee,
  • Michael W. George and
  • Martyn Poliakoff

Beilstein J. Org. Chem. 2017, 13, 329–337, doi:10.3762/bjoc.13.36

Graphical Abstract
  • (scCO2) have mainly been focused on continuous flow systems and the etherification of alcohols, where alcohols are activated by heterogeneous catalysts [31][32][33][34][35][36][37][38]. We have usually employed γ-alumina as the catalyst, as this is a simple, readily available and environmentally benign
  • alcohols are reacted. When the secondary alcohol isopropanol was used as the solvent, no N-alkylation was observed and piperidine 2a was found as the major product. As this catalyst system has been used previously for the etherification of alcohols [31][32][33][34][35][36][37][38], it is possible that
  • the selectivity and yield of 6 up to 55%. This relatively modest yield could not be optimised further. Ethanolamine 8 was used to explore the potential competition between the intra- and intermolecular etherification and amination. In this case we observed no azridine or N-methylaziridine, which would
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Published 21 Feb 2017

Efficient syntheses of climate relevant isoprene nitrates and (1R,5S)-(−)-myrtenol nitrate

  • Sean P. Bew,
  • Glyn D. Hiatt-Gipson,
  • Graham P. Mills and
  • Claire E. Reeves

Beilstein J. Org. Chem. 2016, 12, 1081–1095, doi:10.3762/bjoc.12.103

Graphical Abstract
  • )propan-2-one (63) was easily generated via a two-step protocol (overall 63% yield) that started with the etherification of sodium para-methoxybenzyl alcolate with propargyl bromide [50]. The terminal alkyne on 62 was efficiently transformed into a ketone via an oxymercuration reaction using a combination
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Published 27 May 2016

Synthesis of Xenia diterpenoids and related metabolites isolated from marine organisms

  • Tatjana Huber,
  • Lara Weisheit and
  • Thomas Magauer

Beilstein J. Org. Chem. 2015, 11, 2521–2539, doi:10.3762/bjoc.11.273

Graphical Abstract
  • regioselective tosylation of the primary alcohol 111 set the stage for the construction of the oxolane via Williamson etherification, which was realized by treatment with potassium hydride. Surprisingly, the following deprotection of the MOM ether using standard reaction conditions (1 N aqueous hydrochloric acid
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Published 10 Dec 2015

Novel carbocationic rearrangements of 1-styrylpropargyl alcohols

  • Christine Basmadjian,
  • Fan Zhang and
  • Laurent Désaubry

Beilstein J. Org. Chem. 2015, 11, 1017–1022, doi:10.3762/bjoc.11.114

Graphical Abstract
  • molybdenum(VI)-catalyzed etherification of allylic alcohol with a gold(I)-catalyzed intramolecular cyclization process [5][6]. During the optimization process of this synthesis, we examined several catalysts to transform allylic alcohol 1 into ether 2, including Re2O7, which is described to efficiently
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Published 15 Jun 2015

Synthesis of carbohydrate-scaffolded thymine glycoconjugates to organize multivalency

  • Anna K. Ciuk and
  • Thisbe K. Lindhorst

Beilstein J. Org. Chem. 2015, 11, 668–674, doi:10.3762/bjoc.11.75

Graphical Abstract
  • groups free [14][15]. The following Williamson etherification [16] with propargyl bromide yielded the 2,3-di-O-propargylmannoside 3 in high yield. Propargylation was selected for this step to allow eventual conjugation with the known azidopropylated thymine derivative 6 [17][18][19][20] via copper(I
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Published 07 May 2015

A simple and efficient method for the preparation of 5-hydroxy-3-acyltetramic acids

  • Johanna Trenner and
  • Evgeny V. Prusov

Beilstein J. Org. Chem. 2015, 11, 323–327, doi:10.3762/bjoc.11.37

Graphical Abstract
  • hemiaminal ethers by simple heating them with the corresponding alcohol (Scheme 2). Etherification with methanol, ethanol and 2-trimethylsilylethanol produced the hemiaminal ethers in almost quantitative yields. We next investigated the deprotection of the so obtained hydroxylated derivatives. Several
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Published 06 Mar 2015
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