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Search for "preparation" in Full Text gives 1901 result(s) in Beilstein Journal of Organic Chemistry. Showing first 200.

Sulfate radical anion-induced benzylic oxidation of N-(arylsulfonyl)benzylamines to N-arylsulfonylimines

  • Joydev K. Laha,
  • Pankaj Gupta and
  • Amitava Hazra

Beilstein J. Org. Chem. 2023, 19, 771–777, doi:10.3762/bjoc.19.57

Graphical Abstract
  • reactions, and C–H functionalizations ([3] and references therein), leading to the synthesis of diverse nitrogen heterocycles of pharmaceutical relevance [4]. The traditional synthetic method for the preparation of N-arylsulfonylimines, similar to the preparation of N-arylimines, is based on the
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Published 05 Jun 2023

Construction of hexabenzocoronene-based chiral nanographenes

  • Ranran Li,
  • Di Wang,
  • Shengtao Li and
  • Peng An

Beilstein J. Org. Chem. 2023, 19, 736–751, doi:10.3762/bjoc.19.54

Graphical Abstract
  • bandgaps, which significantly enhanced their semiconducting character [4][5]. Hence, the preparation of graphene segments, so-called nanographenes (NGs), has received much attention. In materials science, graphene fragments have been obtained by “cutting” graphene materials through specific chemical
  • synthesis started with the preparation of the distorted HBC analogue 49, bearing an aryl iodide for the subsequent Sonogashira cross-coupling reaction with alkyne 50 to give 51. The precursor 116 containing three pre-existing HBCs was synthesized through Co-catalyzed cyclotrimerization of compound 51
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Published 30 May 2023

Synthesis of imidazo[1,2-a]pyridine-containing peptidomimetics by tandem of Groebke–Blackburn–Bienaymé and Ugi reactions

  • Oleksandr V. Kolomiiets,
  • Alexander V. Tsygankov,
  • Maryna N. Kornet,
  • Aleksander A. Brazhko,
  • Vladimir I. Musatov and
  • Valentyn A. Chebanov

Beilstein J. Org. Chem. 2023, 19, 727–735, doi:10.3762/bjoc.19.53

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  • . Taking into account all these facts, we solved the task of developing a new approach for the synthesis of hybrid molecules containing substituted pharmacophoric heterocyclic and peptidomimetic fragments. An approach based on the preparation of an imidazo[1,2-a]pyridine-containing heterocyclic acid and
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Published 26 May 2023

Palladium-catalyzed enantioselective three-component synthesis of α-arylglycine derivatives from glyoxylic acid, sulfonamides and aryltrifluoroborates

  • Bastian Jakob,
  • Nico Schneider,
  • Luca Gengenbach and
  • Georg Manolikakes

Beilstein J. Org. Chem. 2023, 19, 719–726, doi:10.3762/bjoc.19.52

Graphical Abstract
  • decrease of the isolated yields. As already demonstrated in our previous work, the Pbf-protected arylglycine products can be directly used as building blocks for peptide synthesis [22]. Finally, we utilized our method for the preparation of a protected version of p-hydroxyphenylglycine (Scheme 5), a common
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Published 25 May 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

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  • of o-nitrotoluene (22) Reduction to 2,2'-diaminobibenzyl (20) Ring-closing via amine condensation Catalytic dehydrogenation 1.1 Oxidative coupling of o-nitrotoluene (22) and reduction to 2,2'-diaminobibenzyl (20) The preparation of dinitrobibenzyl (21) can be achieved by the oxidative coupling of
  • , several methods of carboxamidation were tested, thus allowing the authors to synthesize carbamazepine (CBZ) derivatives of 43. 3 Metal-catalysed cyclisation Diverse metal-catalysed coupling methods exist for the preparation of the dibenzo[b,f]heteropine ring system. The following approaches are broadly
  • –Heck coupling Whereas Arnold et al. [30] reported the preparation of dibenzo[b,f]heteropines via consecutive Heck and Buchwald–Hartwig reactions (Scheme 11), amination may also precede the introduction of the double bond (Scheme 17). The formation of the dibenzo[b,f]heteropine skeleton by means of a
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Published 22 May 2023

Synthesis of medium and large phostams, phostones, and phostines

  • Jiaxi Xu

Beilstein J. Org. Chem. 2023, 19, 687–699, doi:10.3762/bjoc.19.50

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  • developed in the near future for potential biological investigations. On the other hand, various methods have been developed for the synthesis of medium and large phostones and phostines, while only limited strategies have been achieved for the preparation of seven- and eight-membered phostams possibly
  • preparation of medium and large phostams, phostones, and phostines. Synthesis of 1,2-azaphosphepine 2-oxide, 1,2-azaphosphocine 2-oxide, 1,2-azaphosphepane 2-oxide, and 1,2-azaphosphocane 2-oxide from ethyl N-allyl-N-(alkenyl(4-phenoxyphenyl)phosphoryl)glycinates. Synthesis of bis[1,2]oxaphosphepine 2-oxide
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Published 15 May 2023

pH-Responsive fluorescent supramolecular nanoparticles based on tetraphenylethylene-labelled chitosan and a six-fold carboxylated tribenzotriquinacene

  • Nan Yang,
  • Yi-Yan Zhu,
  • Wei-Xiu Lin,
  • Yi-Long Lu and
  • Wen-Rong Xu

Beilstein J. Org. Chem. 2023, 19, 635–645, doi:10.3762/bjoc.19.45

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  • spherical nanoparticles remained relatively stable under different pH conditions. The unique properties of these two fluorescent supramolecular spherical nanoparticles may be valuable for applications in oral drug delivery materials, biomarkers, etc. Experimental Material preparation. Chitosan with a degree
  • give CS-TPE as a pale-yellow solid. The CS-TPE obtained with feed ratios (Rf) of 2, 10, and 20 mol % were denominated CS-TPE-2%, CS-TPE-10%, and CS-TPE-20%, respectively. The labelling degree (DL) of CS-TPE was calculated by Equation 1 based on the 1H NMR data. Preparation of TBTQ-C6/CS-TPE
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Published 08 May 2023

Enolates ambushed – asymmetric tandem conjugate addition and subsequent enolate trapping with conventional and less traditional electrophiles

  • Péter Kisszékelyi and
  • Radovan Šebesta

Beilstein J. Org. Chem. 2023, 19, 593–634, doi:10.3762/bjoc.19.44

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Published 04 May 2023

C3-Alkylation of furfural derivatives by continuous flow homogeneous catalysis

  • Grédy Kiala Kinkutu,
  • Catherine Louis,
  • Myriam Roy,
  • Juliette Blanchard and
  • Julie Oble

Beilstein J. Org. Chem. 2023, 19, 582–592, doi:10.3762/bjoc.19.43

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  • of the development of a sustainable chemical industry [1][2][3][4]. Furfurals, which are versatile platform molecules derived from renewable lignocellulose present in agricultural wastes [5][6][7][8], have proven to be of great importance for the preparation of value-added chemicals, biofuels, as
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Published 03 May 2023

Access to cyclopropanes with geminal trifluoromethyl and difluoromethylphosphonate groups

  • Ita Hajdin,
  • Romana Pajkert,
  • Mira Keßler,
  • Jianlin Han,
  • Haibo Mei and
  • Gerd-Volker Röschenthaler

Beilstein J. Org. Chem. 2023, 19, 541–549, doi:10.3762/bjoc.19.39

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  • closely linked to the substitution pattern of the cyclopropane unit [2]. The prevalence of the biologically active cyclopropyl derivatives, either isolated from natural sources or rationally designed as pharmaceutical agents, has inspired chemists to find efficient methods for their preparation. Among
  • (5). This compound was synthesized smoothly within three steps in 16.6% overall yield. The synthetic route commenced from the preparation of N-protected amine 3, followed by the deprotection of benzylamine 3 to furnish 4 and ended with the diazotization of 4 using tert-butyl nitrite. As a result, the
  • and aliphatic olefins were examined. The reaction conditions were first optimized using 4-methylstyrene as a model substrate. The results are summarized in Table 1. Initially, dirhodium tetraacetate (Rh2(OAc)4), the most common catalyst for the preparation of cyclopropanes, was applied. To our
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Published 25 Apr 2023

Total synthesis: an enabling science

  • Bastien Nay

Beilstein J. Org. Chem. 2023, 19, 474–476, doi:10.3762/bjoc.19.36

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  • the success of total synthesis and can be a source of new discoveries. Indeed, as a science allowing the preparation of useful functional compounds, it is strongly connected to biological and medicinal studies, while the development of natural-product-based tools for chemical biology often requires
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Published 19 Apr 2023

Mechanochemical solid state synthesis of copper(I)/NHC complexes with K3PO4

  • Ina Remy-Speckmann,
  • Birte M. Zimmermann,
  • Mahadeb Gorai,
  • Martin Lerch and
  • Johannes F. Teichert

Beilstein J. Org. Chem. 2023, 19, 440–447, doi:10.3762/bjoc.19.34

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  • generally there are many different synthetic routes to transition metal/NHC complexes [7][8][9][10][11][12][13][14][15] not all of them are applicable to the preparation of copper(I)/NHC compounds (Scheme 1) [5][6][13][16][17][18][19]. Generally, the so-called direct routes via the appropriate imidazol(in
  • “built-in base” route relies on the use of Cu2O which can be directly reacted with a suitable NHC precursor 1 (Scheme 1c) [28]. In any case, the most common approach hinges upon the use of the preliminary preparation of an intermediate silver(I)/NHC complex followed by facile transmetallation to copper(I
  • preparation of copper(I)/NHC complexes [45][47]. All mechanochemical syntheses were carried out in a planetary ball mill and the vessel was loaded in an argon-filled glovebox. Copper(I) chloride, imidazolium salt 3 and the appropriate base were mixed (in a molar ratio of 1.0:1.0:1.5, respectively) and ground
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Published 14 Apr 2023

Combretastatins D series and analogues: from isolation, synthetic challenges and biological activities

  • Jorge de Lima Neto and
  • Paulo Henrique Menezes

Beilstein J. Org. Chem. 2023, 19, 399–427, doi:10.3762/bjoc.19.31

Graphical Abstract
  • route for the preparation of isomeric macrolides of combretastatin D congeners called 11-O-methylcorniculatolide A (5), isocorniculatolide A (7), and 11-O-methylisocorniculatolide A (8), where the key steps comprised an SNAr reaction for the diaryl ether formation and a Mitsunobu reaction for the
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Published 29 Mar 2023

Discrimination of β-cyclodextrin/hazelnut (Corylus avellana L.) oil/flavonoid glycoside and flavonolignan ternary complexes by Fourier-transform infrared spectroscopy coupled with principal component analysis

  • Nicoleta G. Hădărugă,
  • Gabriela Popescu,
  • Dina Gligor (Pane),
  • Cristina L. Mitroi,
  • Sorin M. Stanciu and
  • Daniel Ioan Hădărugă

Beilstein J. Org. Chem. 2023, 19, 380–398, doi:10.3762/bjoc.19.30

Graphical Abstract
  • for preparation. On the other hand, similar methods such as spray-drying do not provide intimate contact between the three types of components for a sufficient period of time to reach the association–dissociation equilibrium [1][27][67]. In this study, the recovery yields were in the range of 51.5
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Published 28 Mar 2023

CuAAC-inspired synthesis of 1,2,3-triazole-bridged porphyrin conjugates: an overview

  • Dileep Kumar Singh

Beilstein J. Org. Chem. 2023, 19, 349–379, doi:10.3762/bjoc.19.29

Graphical Abstract
  • of the synthesis and properties of various porphyrin-triazole hybrids, this review will discuss some of the key reactions involved in the preparation of triazole-linked porphyrin conjugates. Keywords: azide–alkyne; click chemistry; CuAAC; 1,3-dipolar cycloaddition; porphyrin; 1,2,3-triazole
  • synthesize other corresponding metal derivatives. To this end, the review is divided into two major sections, the first of which describes the synthesis of β-triazole-bridged porphyrin conjugates and the second of which discusses the preparation of meso-triazole-linked porphyrin conjugates. Because the
  • -triazole units. Mono-triazole-bridged porphyrin systems This section will describe the synthesis of meso-triazole-linked porphyrins containing one triazole ring by using meso-substituted azide or alkyne bearing porphyrins. In 2007, Séverac et al. [27] reported the preparation of meso-phenyl-linked
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Published 22 Mar 2023

Group 13 exchange and transborylation in catalysis

  • Dominic R. Willcox and
  • Stephen P. Thomas

Beilstein J. Org. Chem. 2023, 19, 325–348, doi:10.3762/bjoc.19.28

Graphical Abstract
  • ][32][33][34][35][36][37][38][39], gallium [36][40][41][42][43][44], and indium [36][45] reagents being used for the preparation of group 13 reagents. Group 13 exchange has recently been used to enable catalytic turnover in traditionally stoichiometric reactions, expanding the use of group 13 compounds
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Published 21 Mar 2023

Continuous flow synthesis of 6-monoamino-6-monodeoxy-β-cyclodextrin

  • János Máté Orosz,
  • Dóra Ujj,
  • Petr Kasal,
  • Gábor Benkovics and
  • Erika Bálint

Beilstein J. Org. Chem. 2023, 19, 294–302, doi:10.3762/bjoc.19.25

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  • most cases, the preparation of these compounds is based on the use of a limited amount of the reagent. However, due to the very similar reactivity of hydroxy groups, oversubstitution cannot be avoided during the reaction, thus chromatography or crystallization steps are essential for the preparation of
  • readily reduced to mono(6-amino-6-deoxy)-CDs (NH2-CDs) opening the way for the preparation of amine, thioureido or amide-linked CD scaffolds [14]. Several other nucleophiles can react with mono-6-O-tosyl-CDs, such as iodide, dithiol, hydroxylamine, alkylamine or polyalkylamine to give iodo- [15], thio
  • corresponding carboxylic acid derivatives [20]. An alternative strategy to overcome the difficulties associated with the preparation of mono-6-O-tosyl-CD intermediates is the direct preparation of 6-monoaldehyde-CD with Dess–Martin periodinane in a fairly good yield of 85%, which can be considered the most
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Published 09 Mar 2023

Synthesis, α-mannosidase inhibition studies and molecular modeling of 1,4-imino-ᴅ-lyxitols and their C-5-altered N-arylalkyl derivatives

  • Martin Kalník,
  • Sergej Šesták,
  • Juraj Kóňa,
  • Maroš Bella and
  • Monika Poláková

Beilstein J. Org. Chem. 2023, 19, 282–293, doi:10.3762/bjoc.19.24

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  • -DIM) was obtained from N-benzylpyrrolidine 26 by the same procedure as described for the preparation of hydrochlorides 10 and 20 (Scheme 3). It should be noted that the hydrochlorides 20 and 29 were synthesized via derivatives 17 and 26 because the alternative approach through acetonides 13 and 22
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Published 06 Mar 2023

Strategies to access the [5-8] bicyclic core encountered in the sesquiterpene, diterpene and sesterterpene series

  • Cécile Alleman,
  • Charlène Gadais,
  • Laurent Legentil and
  • François-Hugues Porée

Beilstein J. Org. Chem. 2023, 19, 245–281, doi:10.3762/bjoc.19.23

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  • -workers reported in 2011 the first enantioselective total synthesis of (+)-ophiobolin A (8), involving a RCM approach to form the central eight-membered ring [24]. In this way, their total synthesis involved the enantioselective preparation of the C-D spiro bicyclic ring system 33 in 21 steps from diester
  • Astericus aquaticus (Asteraceae) which possesses a unique backbone featuring a cyclobutane moiety fused to a cyclopentane ring, a γ-lactone, and an eight-membered enone [60][61]. Zhang and Gu achieved its preparation through the use of a late-stage intramolecular NHK reaction (Scheme 23) [62]. Thus, when
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Published 03 Mar 2023

An efficient metal-free and catalyst-free C–S/C–O bond-formation strategy: synthesis of pyrazole-conjugated thioamides and amides

  • Shubham Sharma,
  • Dharmender Singh,
  • Sunit Kumar,
  • Vaishali,
  • Rahul Jamra,
  • Naveen Banyal,
  • Deepika,
  • Chandi C. Malakar and
  • Virender Singh

Beilstein J. Org. Chem. 2023, 19, 231–244, doi:10.3762/bjoc.19.22

Graphical Abstract
  • , due to various biological activities [36][37][38][39]. Accordingly, a broad spectrum of effective and useful methods has been acknowledged in the literature for their preparation [40][41][42]. In this regard, a review article by Jagodzinski et al. based on the examination of a massive virtual library
  • an operationally simple one-pot procedure for the preparation of highly diversified thioamide and amide-linked pyrazole analogues. Results and Discussion Initially, the synthesis of pyrazole C-3/4/5 carbaldehydes and 4-iodopyrazole-3-carbaldehydes was achieved by employing the recently reported
  • procedures [77][78][79][80]. Thereafter, the pyrazole-3-carbaldehyde 1, morpholine (C) and elemental sulfur were selected as the model substrates towards the preparation of pyrazole-linked thioamide derivatives. To begin with, an experiment was executed with model reactants in the presence of catalytic
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Published 02 Mar 2023

Investigation of cationic ring-opening polymerization of 2-oxazolines in the “green” solvent dihydrolevoglucosenone

  • Solomiia Borova and
  • Robert Luxenhofer

Beilstein J. Org. Chem. 2023, 19, 217–230, doi:10.3762/bjoc.19.21

Graphical Abstract
  • ). However, again the Mn of the final polymer is lower than expected and shows a relatively wide molar mass distribution (Ð = 1.36). Also, the shape of the SEC trace of the final polymer is not narrow or symmetrical. The resulting block copolymer did not show successful results in the preparation of the drug
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Published 28 Feb 2023

Germacrene B – a central intermediate in sesquiterpene biosynthesis

  • Houchao Xu and
  • Jeroen S. Dickschat

Beilstein J. Org. Chem. 2023, 19, 186–203, doi:10.3762/bjoc.19.18

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  • structure was subsequently secured by preparation from 1 through Cope rearrangement [20] and through dehydration of elemol (7) with POCl3 in pyridine yielding 5 and β-elemene (8) (Scheme 3D) [45]. Compound 5 has also frequently been reported from natural sources especially after heat treatment of the sample
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Published 20 Feb 2023

Insight into oral amphiphilic cyclodextrin nanoparticles for colorectal cancer: comprehensive mathematical model of drug release kinetic studies and antitumoral efficacy in 3D spheroid colon tumors

  • Sedat Ünal,
  • Gamze Varan,
  • Juan M. Benito,
  • Yeşim Aktaş and
  • Erem Bilensoy

Beilstein J. Org. Chem. 2023, 19, 139–157, doi:10.3762/bjoc.19.14

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  • . The same technique was used to prepare chitosan (CS)-coated 6-O-capro-β-CD nanoparticles in the presence of CS (0.025% (w/v)) in the aqueous phase. CPT (10% of CD weight) was dissolved in the organic phase to develop drug-loaded nanoparticles. All the details regarding the preparation and
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Published 13 Feb 2023

Practical synthesis of isocoumarins via Rh(III)-catalyzed C–H activation/annulation cascade

  • Qian-Ci Gao,
  • Yi-Fei Li,
  • Jun Xuan and
  • Xiao-Qiang Hu

Beilstein J. Org. Chem. 2023, 19, 100–106, doi:10.3762/bjoc.19.10

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  • preparation of manuscript, the group of Li reported a similar Rh(III)-catalyzed [3 + 3] annulation of enaminones with iodonium ylides [32]. Inspired by the collected contributions [26][27][28] and based on our ongoing research in C–H activation [33][34][35], we recently wondered whether it might be possible
  • heating module was used for the preparation of isocoumarin products 3.) Significance of isocoumarins (a), classic methods for the synthesis of isocoumarins (b) and reaction design (c). Scope of enaminones. Scope of iodonium ylides. Gram-scale reaction (a) and synthetic transformation (b). Proposed
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Published 30 Jan 2023

Organophosphorus chemistry: from model to application

  • György Keglevich

Beilstein J. Org. Chem. 2023, 19, 89–90, doi:10.3762/bjoc.19.8

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  • derivatives. In another study, the synthesis of bis(chlorophenyl)acetylenes that were useful for the preparation of 1,2,3-tris(chlorophenyl)cyclopropenylium bromides was accomplished [3]. The latter species were converted to tributyl(1,2,3-tris(chlorophenyl)cyclopropenyl)phosphonium bromides, affording 3,4,5
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Published 25 Jan 2023
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