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Search for "racemization" in Full Text gives 102 result(s) in Beilstein Journal of Organic Chemistry.

Stereoselective synthesis of hernandulcin, peroxylippidulcine A, lippidulcines A, B and C and taste evaluation

  • Marco G. Rigamonti and
  • Francesco G. Gatti

Beilstein J. Org. Chem. 2015, 11, 2117–2124, doi:10.3762/bjoc.11.228

Graphical Abstract
  • (+)-β-hydroxyhernadulcin isomer (Figure 1), which has been described as a sweetener [39]. Intrigued by the behavior of 3a we prepared the epimer 3d ([α]D −107° (c 1.2, CHCl3) vs lit. [8] [α]D −118.4° (c 0.5, CHCl3)) by the acid catalyzed racemization of C(6) stereogenic center. Remarkably, the absolute
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Published 05 Nov 2015

Radical-mediated dehydrative preparation of cyclic imides using (NH4)2S2O8–DMSO: application to the synthesis of vernakalant

  • Dnyaneshwar N. Garad,
  • Subhash D. Tanpure and
  • Santosh B. Mhaske

Beilstein J. Org. Chem. 2015, 11, 1008–1016, doi:10.3762/bjoc.11.113

Graphical Abstract
  • succinimide 10 without any racemization at the C-3 centre. Finally, reduction of the imide and deprotection of the acetyl moiety was done in a single step by LiAlH4 to obtain vernakalant (11) as the free base. The synthesis was completed in 5 steps with 51% overall yield. A preliminary mechanistic study
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Published 12 Jun 2015

Chiroptical properties of 1,3-diphenylallene-anchored tetrathiafulvalene and its polymer synthesis

  • Masashi Hasegawa,
  • Junta Endo,
  • Seiya Iwata,
  • Toshiaki Shimasaki and
  • Yasuhiro Mazaki

Beilstein J. Org. Chem. 2015, 11, 972–979, doi:10.3762/bjoc.11.109

Graphical Abstract
  • switchable by tuning the electronic structure of the tetrathiafulvalene (TTF) moieties. However, compound 1 exhibited slow racemization in solution under daylight. The chirality of an allene is configurationally firm in general, because the barrier of the rotation of the allenic double bonds is quite high
  • (ΔG‡ = 180 kJ mol−1 for CH3CH=C=CHCH3) [11]. In contrast, several allenes directly connected with electron-donating groups occasionally underwent photoracemization [12][13]. Although the mechanism of the photoracemization is not clear, a comparative examination of the racemization rate in 1 and 2, the
  • latter of which is a dissymmetric allene having a TTF and a pyrenyl group at 1,3-position, suggests that the direct connection of the TTF units may strongly affect the fast racemization [14]. From this point of view, we decided to employ a 1,3-diphenylallene derivative (3) as a stable chiral framework
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Published 08 Jun 2015
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  • Previero, Barry and Coletti-Previero, detailed previously, regarding the stability of most of the common amino acids under acidic, non-hydrolytic reaction conditions (Table 1). The acidic conditions also guard the unprotected amino acid moiety against racemization through protonation close to the chiral
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Published 08 Apr 2015

Cross-dehydrogenative coupling for the intermolecular C–O bond formation

  • Igor B. Krylov,
  • Vera A. Vil’ and
  • Alexander O. Terent’ev

Beilstein J. Org. Chem. 2015, 11, 92–146, doi:10.3762/bjoc.11.13

Graphical Abstract
  • ketones, under the reaction conditions, resulting in the partial racemization [186]. Good results were achieved in the oxidative C–O coupling of ketones, aldehydes and β-dicarbonyl compounds 198 with carboxylic acids 199 in the presence of the Bu4NI/t-BuOOH system [194] (Scheme 41). The coupling can be
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Published 20 Jan 2015

A facile synthesis of functionalized 7,8-diaza[5]helicenes through an oxidative ring-closure of 1,1’-binaphthalene-2,2’-diamines (BINAMs)

  • Youhei Takeda,
  • Masato Okazaki,
  • Yoshiaki Maruoka and
  • Satoshi Minakata

Beilstein J. Org. Chem. 2015, 11, 9–15, doi:10.3762/bjoc.11.2

Graphical Abstract
  • information of 1a through rapid racemization of optically active 2a or of the reaction intermediates. Having identified the optimized conditions for the oxidative ring-closure of 1a, we then turned our attention to applying this method to the preparation of functionalized 7,8-diaza[5]helicenes (Scheme 3
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Published 05 Jan 2015

First chemoenzymatic stereodivergent synthesis of both enantiomers of promethazine and ethopropazine

  • Paweł Borowiecki,
  • Daniel Paprocki and
  • Maciej Dranka

Beilstein J. Org. Chem. 2014, 10, 3038–3055, doi:10.3762/bjoc.10.322

Graphical Abstract
  • identified as a key step in optimizing the process to avoid racemization. To save one step less, we initiated our efforts by direct transformation of the sec-alcohol functionality in afore-obtained compound (±)-3 under modified Mitsunobu [78][79] reaction conditions using Ph3P (1.1 equiv), DEAD (1.1 equiv
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Published 18 Dec 2014

Automated solid-phase peptide synthesis to obtain therapeutic peptides

  • Veronika Mäde,
  • Sylvia Els-Heindl and
  • Annette G. Beck-Sickinger

Beilstein J. Org. Chem. 2014, 10, 1197–1212, doi:10.3762/bjoc.10.118

Graphical Abstract
  • development of racemization suppressants such as the most popular HOBt (1-hydroxybenzotriazole) [55]. HOBt traps the O-acylisourea, an intermediate, which tends to racemization, and forms the activated species. Nowadays, a great variety of coupling reagents are commercially available reaching from traditional
  • reflected in rapid heating on a molecular level [73]. The strength of the heating is influenced by solvents, reactants, sample volumes and the mode of mixing. It has to be noted that an optimization of temperature is mandatory in order to avoid racemization and side reactions [74]. Application of automated
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Published 22 May 2014

Atherton–Todd reaction: mechanism, scope and applications

  • Stéphanie S. Le Corre,
  • Mathieu Berchel,
  • Hélène Couthon-Gourvès,
  • Jean-Pierre Haelters and
  • Paul-Alain Jaffrès

Beilstein J. Org. Chem. 2014, 10, 1166–1196, doi:10.3762/bjoc.10.117

Graphical Abstract
  • stereochemistry of the AT reaction was reported by Reiff and Aaron [29]. They used enantiopure O-isopropyl methylphosphonite 7-1 (Scheme 7-i) as a substrate. This substrate was purified by distillation with no racemization. However, rapid racemization was observed when 7-1 was treated with sodium methoxide in
  • ; consequently, the (R) configuration is preserved in the course of this reaction). The authors also observed a racemization (Scheme 7-ii) when the same reaction was achieved without the addition of a nucleophile (aniline in the present case). The use of similar reaction conditions (CCl4, NEt3) led Mikolajczyk
  • et al. [30] to observe the formation of a mixture of diastereoisomers due to a racemization at the phosphorus atom. However, this racemization was not always observed which points out the different stability of diastereoisomeric species (cyclic phosphite in the present case). Other conditions of
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Published 21 May 2014

Amino acid motifs in natural products: synthesis of O-acylated derivatives of (2S,3S)-3-hydroxyleucine

  • Oliver Ries,
  • Martin Büschleb,
  • Markus Granitzka,
  • Dietmar Stalke and
  • Christian Ducho

Beilstein J. Org. Chem. 2014, 10, 1135–1142, doi:10.3762/bjoc.10.113

Graphical Abstract
  • and Grignard addition. The enantiomeric purity of reisolated 3 was determined by HPLC analysis as its racemization can readily occur via silyl migration under the basic reaction conditions (see Supporting Information File 2 for HPLC chromatograms and for the synthesis of the racemic reference). After
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Published 16 May 2014

Preparation of phosphines through C–P bond formation

  • Iris Wauters,
  • Wouter Debrouwer and
  • Christian V. Stevens

Beilstein J. Org. Chem. 2014, 10, 1064–1096, doi:10.3762/bjoc.10.106

Graphical Abstract
  • . Most reactions gave 89 in low to good yields but in some cases the product could not be isolated, probably due to instability of the product. During the coupling reaction with 13h partial inversion of the phosphorus atom occurred, resulting in racemization. Nickel: Most research has focused on the use
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Published 09 May 2014

Isocyanide-based multicomponent reactions towards cyclic constrained peptidomimetics

  • Gijs Koopmanschap,
  • Eelco Ruijter and
  • Romano V.A. Orru

Beilstein J. Org. Chem. 2014, 10, 544–598, doi:10.3762/bjoc.10.50

Graphical Abstract
  • points and they provide the Ugi-products 53a,b in high yields and mainly as trans-isomers (de >88%), without racemization. As an extension, two other enantiopure isocyanides were combined with a variety of carboxylic acids furnishing a small library of bicyclic dipeptide mimics (55a–d, Scheme 17) in good
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Published 04 Mar 2014

Synthesis and stereochemical assignments of diastereomeric Ni(II) complexes of glycine Schiff base with (R)-2-(N-{2-[N-alkyl-N-(1-phenylethyl)amino]acetyl}amino)benzophenone; a case of configurationally stable stereogenic nitrogen

  • Hiroki Moriwaki,
  • Daniel Resch,
  • Hengguang Li,
  • Iwao Ojima,
  • Ryosuke Takeda,
  • José Luis Aceña and
  • Vadim A. Soloshonok

Beilstein J. Org. Chem. 2014, 10, 442–448, doi:10.3762/bjoc.10.41

Graphical Abstract
  • commercial application of chiral complex 1 is rather limited. The major shortcomings of compound 1 are: problematic scale up of its synthesis, partial racemization of the N-(benzyl)proline moiety and undesirable stereochemical outcomes. To overcome these deficiencies we initiated a project aiming to design a
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Published 19 Feb 2014

Synthesis and biological activity of N-substituted-tetrahydro-γ-carbolines containing peptide residues

  • Nadezhda V. Sokolova,
  • Valentine G. Nenajdenko,
  • Vladimir B. Sokolov,
  • Daria V. Vinogradova,
  • Elena F. Shevtsova,
  • Ludmila G. Dubova and
  • Sergey O. Bachurin

Beilstein J. Org. Chem. 2014, 10, 155–162, doi:10.3762/bjoc.10.13

Graphical Abstract
  • catalytic amounts of CsF (Scheme 1). The corresponding protected azidopeptides 5 [14][15] are accessible by the Ugi multicomponent reaction [16][17][18][19] of chiral isocyanoazides 4 [20] with carbonyl compounds, amines and Boc-protected amino acids (Scheme 2). As we showed before, the racemization of the
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Published 15 Jan 2014

Garner’s aldehyde as a versatile intermediate in the synthesis of enantiopure natural products

  • Mikko Passiniemi and
  • Ari M.P. Koskinen

Beilstein J. Org. Chem. 2013, 9, 2641–2659, doi:10.3762/bjoc.9.300

Graphical Abstract
  • compound (i.e. cleaving off the proton) is done by the addition of Et3N at cold temperatures (–78 to –60 °C). According to Roush, the use of triethylamine for this transformation led to partial racemization of 1 (85% ee). Dondoni noticed that changing the base to the bulkier base N,N-diisopropylethylamine
  • aldehyde 1. As a conclusion of the above results we see that reversing the order of the two first reaction steps has a significant effect on the overall yield (from Garner’s 86% to Dondoni’s 94–98%). Less racemization can be observed with the reduction–oxidation sequence. Of course, other methods for the
  • olefinating reagents) and 2) E/Z-selectivity of the reaction. Moriwake et al. noticed in their synthesis of vinylglycinol 64 that the reaction of methyltriphenylphosphonium bromide with KH as the base provided 62 in fairly good yield, but with complete racemization of the product (Scheme 25) [101]. This
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Published 26 Nov 2013

New developments in gold-catalyzed manipulation of inactivated alkenes

  • Michel Chiarucci and
  • Marco Bandini

Beilstein J. Org. Chem. 2013, 9, 2586–2614, doi:10.3762/bjoc.9.294

Graphical Abstract
  • diastereopure complex 35. Interestingly, the strong [Au(I)]–[Au(I)] aurophilic interaction in 35 prevented racemization even if chiral anions were removed (Scheme 10a). (S)-33 found application in the intramolecular hydroamination of 36, delivering 37 in quantitative yield (98%) and moderate enantioselectivity
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Published 21 Nov 2013

Synthesis of enantiomerically pure N-(2,3-dihydroxypropyl)arylamides via oxidative esterification

  • Akula Raghunadh,
  • Satish S More,
  • T. Krishna Chaitanya,
  • Yadla Sateesh Kumar,
  • Suresh Babu Meruva,
  • L. Vaikunta Rao and
  • U. K. Syam Kumar

Beilstein J. Org. Chem. 2013, 9, 2129–2136, doi:10.3762/bjoc.9.250

Graphical Abstract
  • any racemization under these optimized conditions. Higher dilutions of NMP resulted in longer reaction times and lower yields. A plausible mechanism for the ring opening of epoxide with a nitrogen heterocyclic carbene is presented in Scheme 3. Yadav and co-workers reported the ring opening of epoxide
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Published 17 Oct 2013

Non-cross-linked polystyrene-supported 2-imidazolidinone chiral auxiliary: synthesis and application in asymmetric alkylation reactions

  • Quynh Pham Bao Nguyen and
  • Taek Hyeon Kim

Beilstein J. Org. Chem. 2013, 9, 2113–2119, doi:10.3762/bjoc.9.248

Graphical Abstract
  • % de). In almost cases, the recovery and recycling of this soluble polymer-supported chiral auxiliary were achieved to produce highly optical pure carboxylic acids (99% ee). The alkylated polymer 6a was also treated with LiAlH4 and NaOMe. Unexpectedly, racemization occurred under these cleavage
  • . Unexpectedly, racemization occurred under these cleavage conditions to produce the corresponding chiral alcohol and ester in 80% and 77% ee, respectively. Synthesis of NCPS-supported 2-imidazolidinone chiral auxiliary 3 through direct copolymerization of 2-imidazolidinone derived monomer 2 with styrene
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Published 15 Oct 2013

Total synthesis of (−)-epimyrtine by a gold-catalyzed hydroamination approach

  • Thi Thanh Huyen Trinh,
  • Khanh Hung Nguyen,
  • Patricia de Aguiar Amaral and
  • Nicolas Gouault

Beilstein J. Org. Chem. 2013, 9, 2042–2047, doi:10.3762/bjoc.9.242

Graphical Abstract
  • the in situ deprotection of the amine function to permit the cyclization by Michael addition. However, in some instances partial racemization of the reaction products was observed [22]. Here, one major advantage of gold catalysis is the use of very mild conditions for the cyclization, thereby avoiding
  • any racemization and obtaining N-protected compounds which may be useful for further transformations. In order to illustrate the efficiency of our method, we were interested in extending this methodology to quinolizidine privileged structures. Our retrosynthetic analysis is shown in Scheme 2. We
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Published 09 Oct 2013

A practical synthesis of long-chain iso-fatty acids (iso-C12–C19) and related natural products

  • Mark B. Richardson and
  • Spencer J. Williams

Beilstein J. Org. Chem. 2013, 9, 1807–1812, doi:10.3762/bjoc.9.210

Graphical Abstract
  • a single diastereoisomer (as determined by 1H NMR) in 80% yield. Cleavage of the chiral auxiliary using LiOH/H2O2 (which occurs without racemization at the α-position) [64] afforded (S)-2,15-dimethylpalmitic acid (30) in 98% yield. 2-Hydroxy-15-methylpalmitic acid has been identified from a range of
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Published 04 Sep 2013

Inter- and intramolecular enantioselective carbolithiation reactions

  • Asier Gómez-SanJuan,
  • Nuria Sotomayor and
  • Esther Lete

Beilstein J. Org. Chem. 2013, 9, 313–322, doi:10.3762/bjoc.9.36

Graphical Abstract
  • formation of six-membered rings, though the slow cyclization rate results in racemization. The use of a phenylthio-substituted alkene favors the cyclization, and the faster reaction rate results in an improved optical purity of the indolizidines 35 and 36, though with moderate diastereo- and
  • enantioselectivity. The addition of TMEDA increases the rate of racemization, resulting in an inversion of diastereoselectivity to obtain 36, albeit in racemic form [44]. The enantioselective cycloisomerization of achiral organolithiums in the presence of a chiral ligand has been reported with aryllithium reagents
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Published 13 Feb 2013

Asymmetric synthesis of host-directed inhibitors of myxoviruses

  • Terry W. Moore,
  • Kasinath Sana,
  • Dan Yan,
  • Pahk Thepchatri,
  • John M. Ndungu,
  • Manohar T. Saindane,
  • Mark A. Lockwood,
  • Michael G. Natchus,
  • Dennis C. Liotta,
  • Richard K. Plemper,
  • James P. Snyder and
  • Aiming Sun

Beilstein J. Org. Chem. 2013, 9, 197–203, doi:10.3762/bjoc.9.23

Graphical Abstract
  • known to limit racemization in peptide coupling reactions [16]. The enantiomeric excesses of the starting materials were ca. 95%. No erosion of stereochemistry in the products 12 was observed as determined by chiral HPLC. Recrystallization of 12 from ethanol did not increase the enantiomeric excess of
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Published 30 Jan 2013

The multicomponent approach to N-methyl peptides: total synthesis of antibacterial (–)-viridic acid and analogues

  • Ricardo A. W. Neves Filho,
  • Sebastian Stark,
  • Bernhard Westermann and
  • Ludger A. Wessjohann

Beilstein J. Org. Chem. 2012, 8, 2085–2090, doi:10.3762/bjoc.8.234

Graphical Abstract
  • coupling with carbodiimides, HBTU, HATU, and PyBroP failed or resulted in very low conversions. The addition of a catalytic amount of DMAP to the carbodiimide-mediated reactions improved the conversions, but resulted in severe racemization. The best result was obtained by employing N-ethoxycarbonyl-2
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Published 28 Nov 2012

Asymmetric desymmetrization of meso-diols by C2-symmetric chiral 4-pyrrolidinopyridines

  • Hartmut Schedel,
  • Keizo Kan,
  • Yoshihiro Ueda,
  • Kenji Mishiro,
  • Keisuke Yoshida,
  • Takumi Furuta and
  • Takeo Kawabata

Beilstein J. Org. Chem. 2012, 8, 1778–1787, doi:10.3762/bjoc.8.203

Graphical Abstract
  • associated with the higher mono/diacylation ratio in the asymmetric acylation of 22a promoted by 14 (Table 6, entries 6–8). (Notice: Enantioenriched 23a gradually undergoes partial racemization when it is kept as a CHCl3 solution probably via intramolecular acyl migration: e.g., from 88% ee to 71% ee after
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Published 17 Oct 2012

On the mechanism of action of gated molecular baskets: The synchronicity of the revolving motion of gates and in/out trafficking of guests

  • Keith Hermann,
  • Stephen Rieth,
  • Hashem A. Taha,
  • Bao-Yu Wang,
  • Christopher M. Hadad and
  • Jovica D. Badjić

Beilstein J. Org. Chem. 2012, 8, 90–99, doi:10.3762/bjoc.8.9

Graphical Abstract
  • the gates in the process of the in/out guest exchange necessitates additional scrutiny. In particular, a careful inspection of the additivity of free energies [21] pertaining to the constrictive ΔG‡in/out and intrinsic ΔG° binding energies of the guests [11] as well as the racemization of the basket
  • racemization of basket 1 The aromatic gates in basket 1 interact through hydrogen bonding, as exemplified by a large downfield shift of the signal corresponding to (O=C)N−H protons (δ = 11.6 ppm at 298.0 K, Figure 2) [13]. In addition, the aromatic gates are dynamic, each one revolving about its axis to give
  • rise to two enantiomeric conformers 1A and 1B (Figure 7A). The interconversion kinetics of the 1A/B racemization can be followed by dynamic NMR spectroscopy in which a singlet corresponding to Ha/Hb nuclei at high temperatures is seen to split into two doublets at low temperatures. In particular, the
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Published 16 Jan 2012
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