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Search for "oximes" in Full Text gives 70 result(s) in Beilstein Journal of Organic Chemistry.

Vicinal difunctionalization of alkenes by four-component radical cascade reaction of xanthogenates, alkenes, CO, and sulfonyl oxime ethers

  • Shuhei Sumino,
  • Takahide Fukuyama,
  • Mika Sasano,
  • Ilhyong Ryu,
  • Antoine Jacquet,
  • Frédéric Robert and
  • Yannick Landais

Beilstein J. Org. Chem. 2019, 15, 1822–1828, doi:10.3762/bjoc.15.176

Graphical Abstract
  • radical reagent, the chain reaction proceeds, as expected, taking into account reagents polarities, affording the corresponding functionalized α-keto oximes. Although yields are modest, this rare one-pot four-component process is easy to carry out and the resulting compounds, bearing multiple
  • on the synthesis of functionalized α-keto oximes through such a one-pot, four-component procedure. Results and Discussion We first investigated the reaction of xanthate 1a [29], 1-octene (2a), CO, and sulfonyl oxime ether 3a as a model reaction. When the mixture of 1a, 2a (5 equiv), and 3a (1.2 equiv
  • 2, CO, and oxime esters 3, leading to 5a–l (Figure 1). The xanthate 1b, bearing a phenyl ester, gave similarly to 1a, α-keto oxime 5b in moderate yield. The reaction of 1a or 1b with vinylcyclohexane (2b) in the presence of CO and 3a afforded the corresponding α-keto oximes 5c and 5d in 54 or 32
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Published 31 Jul 2019

Unnatural α-amino ethyl esters from diethyl malonate or ethyl β-bromo-α-hydroxyiminocarboxylate

  • Eloi P. Coutant,
  • Vincent Hervin,
  • Glwadys Gagnot,
  • Candice Ford,
  • Racha Baatallah and
  • Yves L. Janin

Beilstein J. Org. Chem. 2018, 14, 2853–2860, doi:10.3762/bjoc.14.264

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  • boron-based complexes. In an attempt to improve this, we applied the reported use of triethylsilane for reducing oximes into N-hydroxylamines [17] to the case of the α-hydroxyimino ester 2a. However, bringing the reduction of 2a into the N-hydroxylamino derivative 42 to completion with this reagent
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Published 16 Nov 2018

Synthesis of unnatural α-amino esters using ethyl nitroacetate and condensation or cycloaddition reactions

  • Glwadys Gagnot,
  • Vincent Hervin,
  • Eloi P. Coutant,
  • Sarah Desmons,
  • Racha Baatallah,
  • Victor Monnot and
  • Yves L. Janin

Beilstein J. Org. Chem. 2018, 14, 2846–2852, doi:10.3762/bjoc.14.263

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  • cleaved using palladium and ammonium formate to give the corresponding oximes which were immediately reduced into amines 22a,b, using zinc and hydrochloric acid, and a thermal cyclization of these crude products gave the piperazine-2,5-diones 23a,b in, respectively, 31 and 40% overall yield from compound
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Published 15 Nov 2018

Hydroarylations by cobalt-catalyzed C–H activation

  • Rajagopal Santhoshkumar and
  • Chien-Hong Cheng

Beilstein J. Org. Chem. 2018, 14, 2266–2288, doi:10.3762/bjoc.14.202

Graphical Abstract
  • succinimides 50 in good yields (Scheme 31a) [87]. Likewise, oximes 51 [88] were also efficient participated in the hydroarylation of maleimides (Scheme 31b). 3. Hydroarylation of allenes An allene is an exceptional functional group in organic synthesis due to its cumulative double bonds [89][90]. In this
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Published 29 Aug 2018
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  • –carbon bond formation strategies were also examined using the Co(acac)2 HAT system. Sulfonyl oximes 6a and 6b [32] afforded the carbon–carbon coupled products 4j and 4k in 60% and 48% yields, respectively (Table 1, entries 11 and 12, respectively). Recently, our laboratory reported a formal
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Published 28 Aug 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

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  • -bromo-6-hydroxylamino-2,3-benzotropone oximes 262 were obtained. Hydrolysis of these oximes 262 with sulfuric acid gave 5-bromo-6-hydroxy-2,3-benzotropone and the 4-bromo isomer 263, which were debrominated with catalytic hydrogenation to give 239 (Scheme 41). Although 239 is capable of existing as two
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Published 23 May 2018

Hypervalent iodine-mediated Ritter-type amidation of terminal alkenes: The synthesis of isoxazoline and pyrazoline cores

  • Sang Won Park,
  • Soong-Hyun Kim,
  • Jaeyoung Song,
  • Ga Young Park,
  • Darong Kim,
  • Tae-Gyu Nam and
  • Ki Bum Hong

Beilstein J. Org. Chem. 2018, 14, 1028–1033, doi:10.3762/bjoc.14.89

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  • alkene functionalization utilizing a PhI(OAc)2 ((diacetoxyiodo)benzene, PIDA)/Lewis acid combination in order to access isoxazoline and pyrazoline cores. Based on allyl ketone oximes and allyl ketone tosylhydrazones, we have developed an alkene oxyamidation and amido-amidation protocol en route to
  • unactivated olefins provides a rapid construction of different heterocycles [16][17]. More specifically, the formation of isoxazoline and pyrazoline cores via alkene heterofunctionalization of allyl ketone oximes and/or allyl ketone tosylhydrazones has been well documented [18][19][20][21][22]. For example
  • combination with electron-rich, Brønsted basic amines were converted to their corresponding indoline and azaindoline derivatives. However, an attempted expansion of this methodology to allyl ketone oximes and allyl ketone tosylhydrazones proved unsuccessful under the previously reported reaction conditions
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Published 11 May 2018

Synthesis and in vitro biochemical evaluation of oxime bond-linked daunorubicin–GnRH-III conjugates developed for targeted drug delivery

  • Sabine Schuster,
  • Beáta Biri-Kovács,
  • Bálint Szeder,
  • Viktor Farkas,
  • László Buday,
  • Zsuzsanna Szabó,
  • Gábor Halmos and
  • Gábor Mező

Beilstein J. Org. Chem. 2018, 14, 756–771, doi:10.3762/bjoc.14.64

Graphical Abstract
  • provides a suitable conjugation site and can be used for the formation of oximes. We have recently reported that Dau was efficiently linked to the 8Lys side-chain by incorporation of an aminooxyacetic acid (Aoa) moiety [21][25]. The formed oxime linkage is more stable under physiological conditions than
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Published 04 Apr 2018

Oxidative cycloaddition of hydroxamic acids with dienes or guaiacols mediated by iodine(III) reagents

  • Hisato Shimizu,
  • Akira Yoshimura,
  • Keiichi Noguchi,
  • Victor N. Nemykin,
  • Viktor V. Zhdankin and
  • Akio Saito

Beilstein J. Org. Chem. 2018, 14, 531–536, doi:10.3762/bjoc.14.39

Graphical Abstract
  • research on the syntheses of heterocycles by iodine(III)-mediated/catalyzed oxidative cycloaddition reactions [17][18][19], we have found that iodine(III) reagents are effective in the oxidation of N–O bonds of oximes in the cycloaddition reaction of in situ formed nitrile oxides [20][21]. Although Adam
  • adducts 3aa in 96 and 90% yields, respectively (Table 1, entries 10 and 11), BTI showed better results (Table 1, entries 8 and 9). On the other hand, the use of IBA-OTf, which was effective in the oxidative cycloaddition reaction of oximes [20][21], gave nitrone-trifluoromethanesulfonic acid (TfOH
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Published 28 Feb 2018

Photocatalytic formation of carbon–sulfur bonds

  • Alexander Wimmer and
  • Burkhard König

Beilstein J. Org. Chem. 2018, 14, 54–83, doi:10.3762/bjoc.14.4

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Published 05 Jan 2018

Conjugated nitrosoalkenes as Michael acceptors in carbon–carbon bond forming reactions: a review and perspective

  • Yaroslav D. Boyko,
  • Valentin S. Dorokhov,
  • Alexey Yu. Sukhorukov and
  • Sema L. Ioffe

Beilstein J. Org. Chem. 2017, 13, 2214–2234, doi:10.3762/bjoc.13.220

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  • particular focus on recent developments in this methodology and its use in total synthesis. Keywords: carbon–carbon bond formation; Michael addition; nitrosoalkenes; oximes; total synthesis; Introduction Conjugated nitrosoalkenes (NSA) are close analogs of α-nitroalkenes, which are important Michael
  • , Michael addition of C-nucleophiles to α-nitrosoalkenes opens access to synthetically valuable α-branched oximes, which can be further utilized as useful intermediates in total synthesis. The high potential of this carbon–carbon bond-forming strategy has been recognized since 1970s in works of Corey
  • nitrosoacetals 3 are not halocarbonyl compounds as in the case of oximes 1 and 2, but aliphatic nitro derivatives, which are readily transformed into enamines 3 by double silylation involving an internal redox process [19][20][21]. This allows the preparation of nitrosoalkenes, which are difficult to access by
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Published 23 Oct 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
  • in good to excellent yield within 1 h. Dimethyl formamide (DMF) acted as ligand during the activation process (Scheme 53). The protocol was also equally applicable to electron deficient oximes and electron rich anilides [185]. Bolm and co-workers reported a Rh-catalyzed amidation of Csp2–H bonds
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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

Graphical Abstract
  • , especially when it comes to the synthesis of unprotected α-aminocarbonyl targets. One conceptually alternative and long-known approach to access chiral α-aminocarbonyl compounds is to start from simple oximes 48 and carry out a Neber rearrangement [148]. Very remarkably, in 2002 already, Maruoka and co
  • rearrangement oximes 48 to the α-amino ketones 49 (proceeding via the not-isolated intermediate 50) with reasonable enantioselectivities up to 85:15 (Scheme 20). Although the selectivities were not perfectly satisfying and the application scope limited to two examples, this early reported clearly demonstrated
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Published 22 Aug 2017

Oxidative dehydrogenation of C–C and C–N bonds: A convenient approach to access diverse (dihydro)heteroaromatic compounds

  • Santanu Hati,
  • Ulrike Holzgrabe and
  • Subhabrata Sen

Beilstein J. Org. Chem. 2017, 13, 1670–1692, doi:10.3762/bjoc.13.162

Graphical Abstract
  • /or ionic pathways [31][32][33][34]. It was not until 2004, that IBX was applied in the oxidative dehydrogenation of functionalized cyclic and acyclic ketones [31][32][33][34]. IBX was further harnessed in the oxidative dehydrogenation of 2°-amines, N-hydroxides, imines and oximes [31][32][33][34
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Published 15 Aug 2017

Synthesis of 1-indanones with a broad range of biological activity

  • Marika Turek,
  • Dorota Szczęsna,
  • Marek Koprowski and
  • Piotr Bałczewski

Beilstein J. Org. Chem. 2017, 13, 451–494, doi:10.3762/bjoc.13.48

Graphical Abstract
  • -chloropropionyl chloride 174 followed by a intramolecular Friedel–Crafts alkylation afforded 1-indanones 178 (Scheme 51) [80]. A direct reaction of the latter with n-butylnitrite led to the formation of keto-oximes 179 which underwent a Pd/C catalytic reduction to give 2-amino substituted 1-indanones 180. Both
  • keto-oximes 179 and 2-amino derivatives 180 are β2-adrenergic agonists tested for bronchodilating activity. The pterosin family are sesquiterpenoids naturally occurring in bracken fern (Pteridium aquilinum), some of them exhibit antibacterial and cytotoxic activity. A practical synthesis of pterosin A
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Published 09 Mar 2017

Stereo- and regioselectivity of the hetero-Diels–Alder reaction of nitroso derivatives with conjugated dienes

  • Lucie Brulíková,
  • Aidan Harrison,
  • Marvin J. Miller and
  • Jan Hlaváč

Beilstein J. Org. Chem. 2016, 12, 1949–1980, doi:10.3762/bjoc.12.184

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  • TiO2 nanoparticle assemblies using H2O2 [51]. Geminal chloronitroso compounds are synthesized or in situ generated from their corresponding oximes by chlorination. As halogen source elemental chlorine [52][53][54], nitrosyl chloride [55], alkyl hypochlorites [56], N-chlorourea [57], tert-butyl
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Published 01 Sep 2016

Interactions of cyclodextrins and their derivatives with toxic organophosphorus compounds

  • Sophie Letort,
  • Sébastien Balieu,
  • William Erb,
  • Géraldine Gouhier and
  • François Estour

Beilstein J. Org. Chem. 2016, 12, 204–228, doi:10.3762/bjoc.12.23

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  • minutes in presence of 20b, the most toxic enantiomer, (−)-cyclosarin 14a, reacting faster in this enantioselective degradation [75]. Structure–activity relationships based on this first series of compounds revealed the determinant role of oximes’ nucleophilic strength in the hydrolysis process. Firstly
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Published 05 Feb 2016

Copper-mediated synthesis of N-alkenyl-α,β-unsaturated nitrones and their conversion to tri- and tetrasubstituted pyridines

  • Dimitra Kontokosta,
  • Daniel S. Mueller,
  • Dong-Liang Mo,
  • Wiktoria H. Pace,
  • Rachel A. Simpson and
  • Laura L. Anderson

Beilstein J. Org. Chem. 2015, 11, 2097–2104, doi:10.3762/bjoc.11.226

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  • . Keywords: Chan–Lam; copper; nitrone; oxygen transfer; pyridine; Introduction While most applications of the Chan–Lam reaction are focused on the synthesis of aryl ethers and aryl amines, our group has been interested in the use of the Chan–Lam reaction for the synthesis of O-alkenyl oximes and
  • ][38], fragment couplings [39][40][41][42], and transition metal-catalyzed C–H bond functionalization of α,β-unsaturated imines and oximes [43][44][45][46][47][48][49][50]. We were inspired by the copper-catalyzed coupling of protected α,β-unsaturated oximes and alkenylboronic acids developed by
  • -propargylic oximes and undergo similar electrocyclizations to form pyridines (Scheme 2B) [52]. Herein, we show that N-alkenylnitrones 8 can be prepared through a Chan–Lam coupling of α,β-unsaturated oximes 6 and an alkenylboronic acids 7 and that these compounds undergo a novel thermal rearrangement to the
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Published 04 Nov 2015

Copper-catalyzed aerobic radical C–C bond cleavage of N–H ketimines

  • Ya Lin Tnay,
  • Gim Yean Ang and
  • Shunsuke Chiba

Beilstein J. Org. Chem. 2015, 11, 1933–1943, doi:10.3762/bjoc.11.209

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  • the synthesis of azaheterocycles through an intramolecular N–C bond formation with the unsaturated systems [1][2][3][4][5][6]. As precursors of iminyl radicals, readily available oximes and their derivatives have commonly been utilized. The generation of iminyl radicals involves the homolysis of the N
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Published 19 Oct 2015

Synthesis of a tricyclic lactam via Beckmann rearrangement and ring-rearrangement metathesis as key steps

  • Sambasivarao Kotha,
  • Ongolu Ravikumar and
  • Jadab Majhi

Beilstein J. Org. Chem. 2015, 11, 1503–1508, doi:10.3762/bjoc.11.163

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  • -rearrangement metathesis as key steps. Here, we used a simple starting material such as dicyclopentadiene. Keywords: allylation; Beckmann rearrangement; lactams; oximes; ring-rearrangement metathesis; Introduction The Beckmann rearrangement (BR), a well-known protocol for the conversion of ketoxime to an
  • conditions gave the saturated ketone 7 [32] (Scheme 1). Later, tricyclic ketone 7 was reacted with NH2OH·HCl in the presence of NaOAc in dry MeOH at rt to give a mixture of oximes 8a and 8b and this mixture was subjected to a BR under different reaction conditions, like (a) p-TsCl, rt, 15 h, CH3CN (b) p-TsCl
  • , reflux, 15 h, CH3CN (c) PPA, reflux for 20 min. Surprisingly, in all these instances no rearrangement product was observed. Interestingly, when the mixture of oximes 8a and 8b was treated with TsCl in the presence of NaOH at rt lactams 9a and 9b were obtained in 66% combined yield for two steps (9a:9b
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Published 27 Aug 2015

Cathodic hydrodimerization of nitroolefins

  • Michael Weßling and
  • Hans J. Schäfer

Beilstein J. Org. Chem. 2015, 11, 1163–1174, doi:10.3762/bjoc.11.131

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  • the easy access to nitroolefins in large variety, the C–C bond formation with the introduction of two nitro groups in a 1,4-distance and the conversions of the nitro group by reduction to oximes and amines, the conversion into aldehydes and ketones via the Nef reaction and base catalyzed condensations
  • anion to a carbonyl group followed by elimination of water from the resulting alcohol. The nitroolefin can be reduced at the nitro group, at the double bond and simultaneously at both groups. In acidic medium the nitro group is reduced between −0.25 V to −0.55 V vs SCE to mixtures of syn/anti-oximes in
  • 85% to 92% yield at a mercury pool cathode and with slightly lower yields at a graphite cathode [5][6][7][8]. The current controlled reduction of alkyl- and aryl-substituted nitroalkenes in acidic medium affords mixtures of ketones and oximes in yields of 39% to 72% [9] and 55% to 91% [10
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Published 14 Jul 2015

Diastereoselective and enantioselective conjugate addition reactions utilizing α,β-unsaturated amides and lactams

  • Katherine M. Byrd

Beilstein J. Org. Chem. 2015, 11, 530–562, doi:10.3762/bjoc.11.60

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  • ] and biological chemistry [249][250][251][252]. In the past, the Jacobsen group has used chiral (salen)Al complexes [253] as catalysts for the asymmetric 1,4-addition of azide [254], cyanide [219], substituted nitriles [255] and oximes [256] to α,β-unsaturated imides. The authors used these previous
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Published 23 Apr 2015

Stereoselective cathodic synthesis of 8-substituted (1R,3R,4S)-menthylamines

  • Carolin Edinger,
  • Jörn Kulisch and
  • Siegfried R. Waldvogel

Beilstein J. Org. Chem. 2015, 11, 294–301, doi:10.3762/bjoc.11.34

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  • Carolin Edinger Jorn Kulisch Siegfried R. Waldvogel Institut für Organische Chemie, Johannes Gutenberg-Universität Mainz, Duesbergweg 10-14, 55128 Mainz, Germany 10.3762/bjoc.11.34 Abstract The electrochemical generation of menthylamines from the corresponding menthone oximes equipped with an
  • additional substituent in position 8 is described. Due to 1,3-diaxial interactions a pronounced diastereoselectivity for the menthylamines is found. Keywords: cathodic reduction; chiral amines; electrosynthesis; menthylamines; oximes; Introduction Optically active amines serve as powerful and versatile
  • starting from commercially available (+)-pulegone (4, Scheme 3). An important feature of this sequence is the initial introduction of a sterically demanding moiety R in position 8 via cuprate addition. After conversion to menthone oximes 7 within the second step, R is supposed to enhance the
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Published 27 Feb 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
  • lower temperature (50 °C instead of 100 °C, as in the case of CH-reagents 22 and 23) [53]. The ortho-acetoxylation and methoxylation of O-methyl aryl oximes 31 with Pd(OAc)2 combined with such oxidants as oxone, potassium persulfate, and (diacetoxyiodo)benzene (Scheme 7, coupling products 32 and 33
  • [55], and O-acetyl aryl oximes [56] in the presence of the Pd(OAc)2/PhI(OAc)2 system were described. The ruthenium-catalyzed ortho-acyloxylation of acetanilides 39 with carboxylic acids in the presence of AgSbF6 and ammonium persulfate afforded products 40 (Scheme 8) [57]. This method can be used for
  • of iodine(III) oxidants (50–130 °C, Scheme 19 and Scheme 20). Under similar conditions methyl groups of N-(quinolin-8-yl)amides were acetoxylated using the Cu(OAc)2 catalyst (50 mol %) and AgOAc (3 equiv) as acetoxylating agent. The acetoxylation of alkyl groups of O-acetyl oximes 102 taking place in
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Published 20 Jan 2015

Come-back of phenanthridine and phenanthridinium derivatives in the 21st century

  • Lidija-Marija Tumir,
  • Marijana Radić Stojković and
  • Ivo Piantanida

Beilstein J. Org. Chem. 2014, 10, 2930–2954, doi:10.3762/bjoc.10.312

Graphical Abstract
  • rather expensive; therefore efforts were made to replace them with cheaper analogues. One successful approach included iron(III) acetylacetonate in acetic acid as catalytic agent (Scheme 16) [37], whereby O-acetyl oximes obtained from 2′-arylacetophenones underwent N–O bond cleavage and intramolecular N
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Published 10 Dec 2014
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