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Search for "acetylation" in Full Text gives 222 result(s) in Beilstein Journal of Organic Chemistry. Showing first 200.

Azo-dimethylaminopyridine-functionalized Ni(II)-porphyrin as a photoswitchable nucleophilic catalyst

  • Jannis Ludwig,
  • Julian Helberg,
  • Hendrik Zipse and
  • Rainer Herges

Beilstein J. Org. Chem. 2020, 16, 2119–2126, doi:10.3762/bjoc.16.179

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  • , spiropyranes, and stilbenes [2]. Diarylethenes were reported in the context of photoswitchable catalysis as inhibitors of the Karstedt´s catalyst [3] and for pKa modulation in acid–base-controlled processes [4]. Molecular motors for stereodivergent anion binding catalysis [5], azopeptides for the acetylation
  • -porphyrin. The DMAP-catalyzed acetylation of alcohols should not suffer from this drawback because the reactive intermediate (acylpyridinium cation) is positively charged and does not coordinate to the Ni2+ ion [33]. Another promising approach towards coordination-based, photoswitchable catalysts are
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Published 31 Aug 2020

Synthesis, docking study and biological evaluation of ᴅ-fructofuranosyl and ᴅ-tagatofuranosyl sulfones as potential inhibitors of the mycobacterial galactan synthesis targeting the galactofuranosyltransferase GlfT2

  • Marek Baráth,
  • Jana Jakubčinová,
  • Zuzana Konyariková,
  • Stanislav Kozmon,
  • Katarína Mikušová and
  • Maroš Bella

Beilstein J. Org. Chem. 2020, 16, 1853–1862, doi:10.3762/bjoc.16.152

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  • diacetate 18 under acetolysis conditions (Ac2O/BF3∙OEt2) [22]. However, besides the expected diacetate 18, 1,2,6-tri-O-acetate 19 was observed and isolated as a byproduct (Scheme 4). The cleavage of the O-benzyl ethers followed by acetylation of the liberated hydroxy groups under acidic conditions was
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Published 27 Jul 2020

Tuneable access to indole, indolone, and cinnoline derivatives from a common 1,4-diketone Michael acceptor

  • Dalel El-Marrouki,
  • Sabrina Touchet,
  • Abderrahmen Abdelli,
  • Hédi M’Rabet,
  • Mohamed Lotfi Efrit and
  • Philippe C. Gros

Beilstein J. Org. Chem. 2020, 16, 1722–1731, doi:10.3762/bjoc.16.144

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  • -catalyzed acetylation of these alcohols, which gave the corresponding acetates 2a–d [59]. The nitrenones 3a–d were finally obtained in an acceptable yield by reacting the acetate derivatives with the appropriate nitroalkanes [60]. The next step was the transformation of the nitro group of 3a–d via the Nef
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Published 17 Jul 2020

Synthesis of the tetrasaccharide repeating unit of the O-specific polysaccharide of Azospirillum doebereinerae type strain GSF71T using linear and one-pot iterative glycosylations

  • Arin Gucchait,
  • Pradip Shit and
  • Anup Kumar Misra

Beilstein J. Org. Chem. 2020, 16, 1700–1705, doi:10.3762/bjoc.16.141

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  • treatment with HClO4-SiO2 [34]; (c) selective acetylation of the primary hydroxy group, and (d) removal of the benzyl groups by catalytic transfer hydrogenation [35] using triethylsilane in the presence of Pearlman’s catalyst [36] to furnish the desired tetrasaccharide 1 in 50% overall yield with the two O
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Published 15 Jul 2020

Synthesis of Streptococcus pneumoniae serotype 9V oligosaccharide antigens

  • Sharavathi G. Parameswarappa,
  • Claney L. Pereira and
  • Peter H. Seeberger

Beilstein J. Org. Chem. 2020, 16, 1693–1699, doi:10.3762/bjoc.16.140

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  • vaccines. The serotype 9V is part of the currently marketed conjugate vaccine and contains an acetate modification. To better understand the importance of glycan modifications in general and acetylation in particular, defined oligosaccharide antigens are needed for serological and immunological studies
  • escape the host immune response [1][7]. These polysaccharides of SP consist of repeating units (RU) that range from di- to heptasaccharides that may be branched and/or charged [8]. Modifications such as O-acetylation, phosphorylation, and sulfation further increase CPS complexity. Many bacterial
  • polysaccharides are O-acetylated [9][10]. Especially SP serotypes, such as 9 (A, V) and 18C differ in O-acetylation. Two O-acetylated serotypes (9V and 18C) are part of the commercial vaccine Prevnar® 13. The traditional CPS isolation approach produces varying length CPS with different degrees of acetylation. An
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Published 15 Jul 2020

Azidophosphonium salt-directed chemoselective synthesis of (E)/(Z)-cinnamyl-1H-triazoles and regiospecific access to bromomethylcoumarins from Morita–Baylis–Hillman adducts

  • Soundararajan Karthikeyan,
  • Radha Krishnan Shobana,
  • Kamarajapurathu Raju Subimol,
  • J. Helen Ratna Monica and
  • Ayyanoth Karthik Krishna Kumar

Beilstein J. Org. Chem. 2020, 16, 1579–1587, doi:10.3762/bjoc.16.130

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  • ) acetylation, (ii) azidation, and (iii) cycloaddition to produce IV–VIII. In spite of the broad scope and synthetic utility, it is evident that the multistep synthetic methodology is the only existing module for cycloaddition reactions. Our research group is focused on developing one-pot synthetic
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Published 01 Jul 2020

Recent synthesis of thietanes

  • Jiaxi Xu

Beilstein J. Org. Chem. 2020, 16, 1357–1410, doi:10.3762/bjoc.16.116

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Published 22 Jun 2020

Efficient synthesis of piperazinyl amides of 18β-glycyrrhetinic acid

  • Dong Cai,
  • ZhiHua Zhang,
  • Yufan Meng,
  • KaiLi Zhu,
  • LiYi Chen,
  • ChangXiang Yu,
  • ChangWei Yu,
  • ZiYi Fu,
  • DianShen Yang and
  • YiXia Gong

Beilstein J. Org. Chem. 2020, 16, 798–808, doi:10.3762/bjoc.16.73

Graphical Abstract
  • described in Scheme 1 and Table 1 led us to consider a new approach for preparing the piperazinyl amide 4 (Scheme 2). Two general procedures for the synthesis of compound 8 are documented. One method involves acetylation of 18β-glycyrrhetinic acid, followed by amidation of the resulting ester 2 to give
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Published 21 Apr 2020

Combining enyne metathesis with long-established organic transformations: a powerful strategy for the sustainable synthesis of bioactive molecules

  • Valerian Dragutan,
  • Ileana Dragutan,
  • Albert Demonceau and
  • Lionel Delaude

Beilstein J. Org. Chem. 2020, 16, 738–755, doi:10.3762/bjoc.16.68

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  • affording a protected tetracyclic kempane derivative. The latter was further converted into (+)-kempene-2 (14a) in 91% yield by deprotection and acetylation (Scheme 17). A reduction of the intermediate ketone with lithium aluminum hydride followed by an acetylation finally led to (+)-kempene-1 (14b) and
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Published 16 Apr 2020

Design and synthesis of diazine-based panobinostat analogues for HDAC8 inhibition

  • Sivaraman Balasubramaniam,
  • Sajith Vijayan,
  • Liam V. Goldman,
  • Xavier A. May,
  • Kyra Dodson,
  • Sweta Adhikari,
  • Fatima Rivas,
  • Davita L. Watkins and
  • Shana V. Stoddard

Beilstein J. Org. Chem. 2020, 16, 628–637, doi:10.3762/bjoc.16.59

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  • involve acetylation/deacetylation of histone proteins by histone deacetylases (HDACs) [1]. HDACs belong to an important family of enzymes consisting of 18 isozymes. They control protein acetylation, which is a change that occurs after translation. In addition, they regulate gene transcription, cell
  • differentiation, cell cycle progression and apoptosis by targeting both histone and non-histone proteins. The balance between acetylation and deacetylation is pivotal for typical cell function. Abnormal or increased HDAC expression has been reported in several human tumors and cancer cell lines [2]. As such, the
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Published 07 Apr 2020

Convenient synthesis of the pentasaccharide repeating unit corresponding to the cell wall O-antigen of Escherichia albertii O4

  • Tapasi Manna,
  • Arin Gucchait and
  • Anup Kumar Misra

Beilstein J. Org. Chem. 2020, 16, 106–110, doi:10.3762/bjoc.16.12

Graphical Abstract
  • -iodosuccinimide (NIS) and perchloric acid supported over silica (HClO4/SiO2) [28][29] furnished disaccharide derivative 8 in 79% yield, which on de-O-acetylation using sodium methoxide [30] gave the disaccharide acceptor 9 in 95% yield. NMR spectral analysis of compound 9 confirmed its formation with appropriate
  • -1C), 5.50 (s, PhCH), 4.79 (d, J = 7.5 Hz, H-1B) in 1H NMR and at δ 103.3 (C-1B), 100.8 (PhCH), 99.0 (C-1A), 97.1 (C-1C) in 13C NMR spectra]. Compound 12 was subjected to a set of reactions consisting of a one-pot [32] de-O-acetylation and benzylation using benzyl bromide and sodium hydroxide in the
  • subjected to a sequence of reactions consisting of (i) reductive transformation of the azido group into an acetamido group by the treatment with thioacetic acid [34]; (ii) transformation of the N-phthalimido group into acetamido group using hydrazine hydrate followed by selective N-acetylation [35]; (iii
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Published 22 Jan 2020

Starazo triple switches – synthesis of unsymmetrical 1,3,5-tris(arylazo)benzenes

  • Andreas H. Heindl and
  • Hermann A. Wegner

Beilstein J. Org. Chem. 2020, 16, 22–31, doi:10.3762/bjoc.16.4

Graphical Abstract
  • . The azobenzene building block 8, with an unsubstituted phenyl ring and two orthogonal nitrogen substituents in the 3- and 5-position (Scheme 3), was prepared. The synthesis commenced with the acetylation of 3,5-dinitroaniline (4) in 95% yield, followed by the selective reduction of one nitro group
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Published 03 Jan 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

Graphical Abstract
  • -protected hydroxymethyl group-substituted compound 11 in order to increase its reactivity by reducing the steric hinderance and destabilizing effect of the electron-withdrawing carboxy group at the anomeric center (Scheme 2) [35]. This included a LiBH4 reduction in MeOH and THF, followed by acetylation of
  • as catalyst under neat conditions, which provided the expected β-ring-opened product 12 in a moderate yield (Table 1, entry 5). This acetolysis reaction resulted in regioselective acetylation of positions O-7 and O-2 in line with the principles of green chemistry. It is known that anomeric acetates
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Published 23 Dec 2019

Chemical synthesis of the pentasaccharide repeating unit of the O-specific polysaccharide from Escherichia coli O132 in the form of its 2-aminoethyl glycoside

  • Debasish Pal and
  • Balaram Mukhopadhyay

Beilstein J. Org. Chem. 2019, 15, 2563–2568, doi:10.3762/bjoc.15.249

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  • rhamnosyl donor 3 ensured the formation of the desired 1,2-trans glycoside. Peaks at 4.52 ppm (s, 1H, H-1′) in the 1H NMR and at 98.1 (C-1′) in the 13C NMR spectra confirmed the stereochemistry of the newly formed glycosidic linkage. Further, Zemplén de-O-acetylation [14] gave the disaccharide acceptor 5 in
  • the target molecule. First, the phthalimido group was removed using ethylenediamine [26] followed by acetylation with Ac2O in the presence of pyridine [27] to furnish the desired acetamido functionality. Next, the benzylidene group was hydrolyzed using 80% AcOH at 80 ºC [28]. Further, Zemplén de-O
  • -acetylation using NaOMe in MeOH followed by hydrogenolysis in a ThalesNano continuous flow hydrogenation assembly using a 10% Pd-C cartridge [29]. After three cycles of hydrogenation, formation of the target pentasaccharide 1 was evident from the mass spectrum (Scheme 4). Conclusion In conclusion, the
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Published 28 Oct 2019

Synthesis of novel sulfide-based cyclic peptidomimetic analogues to solonamides

  • José Brango-Vanegas,
  • Luan A. Martinho,
  • Lucinda J. Bessa,
  • Andreanne G. Vasconcelos,
  • Alexandra Plácido,
  • Alex L. Pereira,
  • José R. S. A. Leite and
  • Angelo H. L. Machado

Beilstein J. Org. Chem. 2019, 15, 2544–2551, doi:10.3762/bjoc.15.247

Graphical Abstract
  • anhydride to yield 7. Despite the good results for the acetylation of peptides 6 with R = Me at room temperature, the reaction of the ones with R = n-hexyl needed to be conducted under heat conditions (50 °C). Acidic treatment of the acetates 7 with trifluoroacetic acid: triisopropylsilane decoupling
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Published 25 Oct 2019

Indium-mediated C-allylation of melibiose

  • Christian Denner,
  • Manuel Gintner,
  • Hanspeter Kählig and
  • Walther Schmid

Beilstein J. Org. Chem. 2019, 15, 2458–2464, doi:10.3762/bjoc.15.238

Graphical Abstract
  • unprotected elongated disaccharides in the equilibrium of the pyranoid as well as furanoid isomers in both anomeric forms, respectively. Per-O-acetylation has been performed to facilitate separation of the isomeric mixture for structural identification. The main product revealed to adopt a β-pyranoid form of
  • rate. Additionally, intense stirring of the reaction mixture thereby preventing indium powder cluster formation (Table 1, entry 7) turned out to be of advantage for the progress of the reaction. After the allylation subsequent per-O-acetylation gave a mixture of respective epimeric products at position
  • -acetylation was conducted leading to a mixture of all four species, indicated by NMR analysis (Scheme 3). In the case of 2-syn the β-pyranose species 5-syn-β was obtained as the main product, besides α-pyranose (5-syn-α) as well as both anomers of the furanoid form (Scheme 4). The overall yield obtained over
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Published 16 Oct 2019

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

Graphical Abstract
  • . The same methodology was applied in the preparation of (2S,3S)-148. β-Amino acids: (+)-Isoserine ((R)-152) was synthesized from the aziridine ester (2R,1'R)-5b in three simple steps (Scheme 39) [92]. Treatment of (2R,1'R)-5b with acetyl chloride led to N-acetylation with concomitant opening of the
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Published 23 Jul 2019

Recent advances on the transition-metal-catalyzed synthesis of imidazopyridines: an updated coverage

  • Gagandeep Kour Reen,
  • Ashok Kumar and
  • Pratibha Sharma

Beilstein J. Org. Chem. 2019, 15, 1612–1704, doi:10.3762/bjoc.15.165

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  • ][60]. They have been employed for a number of organic reactions viz., hydrosilylation of aldehydes and ketones, acetylation reactions, redox reactions, oxidative esterification, etc. [61][62][63]. Thus, in concern with increasing demand for sustainable development, a growing number of catalytic
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Published 19 Jul 2019

A chemoenzymatic synthesis of ceramide trafficking inhibitor HPA-12

  • Seema V. Kanojia,
  • Sucheta Chatterjee,
  • Subrata Chattopadhyay and
  • Dibakar Goswami

Beilstein J. Org. Chem. 2019, 15, 490–496, doi:10.3762/bjoc.15.42

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  • [47]. Hence, we screened different lipases for the trans-acetylation of (±)-4 for its effective resolution and the results are summarized in Table 1. Based on our past experience in lipase-catalyzed resolution of homoallylic alcohols [38], initially a Novozym 435®-catalyzed acetylation of (±)-4 with
  • vinyl acetate in diisopropyl ether (DIP) was attempted. However, the yield and enantioselectivity of the desired alcohol (S)-4 were very poor (Table 1, entry 1). Also the acetylation of (±)-4 with vinyl acetate in diisopropyl ether using Candida rugosa lipase (CRL) and Pseudomonas fluorescens lipase
  • , near the optimum temperature of the enzyme (55 °C). Under these conditions, a 50% conversion was achieved within 48 h to obtain both (R)-5 and (S)-4 in 90% ee (Table 1, entry 5). A second acetylation (12% conversion, 20 h) of the resolved (S)-4 under the same conditions improved its ee to 99% (Table 1
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Published 18 Feb 2019

Chemical structure of cichorinotoxin, a cyclic lipodepsipeptide that is produced by Pseudomonas cichorii and causes varnish spots on lettuce

  • Hidekazu Komatsu,
  • Takashi Shirakawa,
  • Takeo Uchiyama and
  • Tsutomu Hoshino

Beilstein J. Org. Chem. 2019, 15, 299–309, doi:10.3762/bjoc.15.27

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  • with the acetyl carbonyl carbon. The δH of H-3 in the tetraacetate was shifted downfield by ca. 1.0 ppm (acetylation shift) relative to that in the monoacetate (δH 4.19 → δH 5.37), confirming that the OH group of the FA was acetylated. Consequently, the complete structure of cichorinotoxin tetraacetate
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Published 01 Feb 2019

Synthesis of nonracemic hydroxyglutamic acids

  • Dorota G. Piotrowska,
  • Iwona E. Głowacka,
  • Andrzej E. Wróblewski and
  • Liwia Lubowiecka

Beilstein J. Org. Chem. 2019, 15, 236–255, doi:10.3762/bjoc.15.22

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  • this imide with a reagent obtained from (R)-binaphthol [(R)-BINAL-H] followed by acetylation furnished the triacetate (3R,4S)-111 as a single diastereoisomer after chromatographic purification (Scheme 27). However, its cyanation as described earlier gave a 38:62 mixture of diacetates (3R,4R,5S)-112 and
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Published 25 Jan 2019

Unexpected loss of stereoselectivity in glycosylation reactions during the synthesis of chondroitin sulfate oligosaccharides

  • Teresa Mena-Barragán,
  • José L. de Paz and
  • Pedro M. Nieto

Beilstein J. Org. Chem. 2019, 15, 137–144, doi:10.3762/bjoc.15.14

Graphical Abstract
  • envisioned the synthetic approach shown in Scheme 1 for the preparation of CS oligosaccharides. Final molecules would be prepared from fully protected precursors by extensive basic hydrolysis followed by selective N-acetylation. The CS chains would be generated by iterative coupling between the disaccharide
  • positions 4 and 6 of GalNAc units favor the formation of 1,2-cis glycosidic bonds, even in the presence of 2-participating groups [43][44]. Treatment with (HF)n·Py complex in THF followed by standard acetylation provided compound 7. This derivative displayed a suitable protecting group distribution for the
  • heptadecafluoroundecanoyl chloride in the presence of Et3N and catalytic DMAP in a DMF/CH2Cl2 solvent mixture (Scheme 3). Acetylation of the 4-hydroxy group provided disaccharide 10 after F-SPE purification. We planned to employ the final CS oligosaccharides in binding studies to some of the enzymes participating in the
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Published 15 Jan 2019

Selective ring-opening metathesis polymerization (ROMP) of cyclobutenes. Unsymmetrical ladderphane containing polycyclobutene and polynorbornene strands

  • Yuan-Zhen Ke,
  • Shou-Ling Huang,
  • Guoqiao Lai and
  • Tien-Yau Luh

Beilstein J. Org. Chem. 2019, 15, 44–51, doi:10.3762/bjoc.15.4

Graphical Abstract
  • bonds in 7 might adopt cis configuration. Moreover, no norbornene moiety was detected by NMR on the polymeric backbones in 7 (Scheme 7). Since 18 was insoluble in most organic solvents, acetylation of 18 with excess acetic anhydride and pyridine at 70 °C for 10 h gave the corresponding acetate 19, which
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Published 03 Jan 2019

Microwave-assisted synthesis of biologically relevant steroidal 17-exo-pyrazol-5'-ones from a norpregnene precursor by a side-chain elongation/heterocyclization sequence

  • Gergő Mótyán,
  • László Mérai,
  • Márton Attila Kiss,
  • Zsuzsanna Schelz,
  • Izabella Sinka,
  • István Zupkó and
  • Éva Frank

Beilstein J. Org. Chem. 2018, 14, 2589–2596, doi:10.3762/bjoc.14.236

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  • 10.3762/bjoc.14.236 Abstract Multistep syntheses of novel 17β-pyrazol-5'-ones in the Δ5-androstane series were efficiently carried out from pregnenolone acetate. A steroidal 17-carboxylic acid was first synthesized as a norpregnene precursor by the bromoform reaction and subsequent acetylation. Its CDI
  • multistep sequence (Scheme 1). First compound 1 was converted to the 17β-carboxylic acid 2b by the bromoform reaction and subsequent acetylation according to well-known literature procedures [21][22][23]. After the activation of 2b with 1,1′-carbonyldiimidazole (CDI) as coupling reagent in THF, the
  • , a subsequent derivatization with acetic anhydride in pyridine to afford 8, allowed its structure verification indirectly. This derivatization did not only improve the solubility of the compound, but also eliminated the possibility of prototropic tautomerism through acetylation of both the amino and
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Published 08 Oct 2018

Tetrathiafulvalene – a redox-switchable building block to control motion in mechanically interlocked molecules

  • Hendrik V. Schröder and
  • Christoph A. Schalley

Beilstein J. Org. Chem. 2018, 14, 2163–2185, doi:10.3762/bjoc.14.190

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  • structurally similar rotaxane in which the ammonium station is blocked by N-acetylation shows that the isoxazole moiety acts as a weak second binding station for the wheel. Oxidation of the TTF unit results in Coulombic repulsion between the wheel and the ammonium station which counteracts the energy of
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Published 20 Aug 2018
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