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Search for "halides" in Full Text gives 451 result(s) in Beilstein Journal of Organic Chemistry. Showing first 200.

1,2,3-Triazolium macrocycles in supramolecular chemistry

  • Mastaneh Safarnejad Shad,
  • Pulikkal Veettil Santhini and
  • Wim Dehaen

Beilstein J. Org. Chem. 2019, 15, 2142–2155, doi:10.3762/bjoc.15.211

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  • an active metal template strategy. The 1H NMR binding data of 8·Se were studied in organic and aqueous solvent mixtures, revealing that ChB–anion binding affinity can compete with and even outperform hydrogen bonding receptor analogues. Due to the larger degree of covalency with the heavier halides
  • , charge-assisted ChB-mediated anion binding prefers larger halides as in the series I− > Br− > Cl−. However, this chalcogen bonding 1,2,3-triazolium macrocycle was not able to host larger anions such as oxoanions due to the smaller size of the cavity [50]. In addition, they have also shown considerable
  • this receptor for binding strongly to the anionic species. Among all of the tested negatively-charged ions such as halides and oxoanions, receptor 9 recognizes iodide and bromide stronger than chloride, fluoride, acetate and sulfate in a 9:1 DMSO-d6/D2O solvent mixture. The highest displayed binding
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Published 12 Sep 2019

Installation of -SO2F groups onto primary amides

  • Jing Liu,
  • Shi-Meng Wang,
  • Njud S. Alharbi and
  • Hua-Li Qin

Beilstein J. Org. Chem. 2019, 15, 1907–1912, doi:10.3762/bjoc.15.186

Graphical Abstract
  • liver [23]. The nucleotide-derived probe 5’-(para-fluorosulfonylbenzoyl)adenosine (5’-FSBA) was used for labelling the second nucleotide binding site, the adenine nucleotide regulatory site [24]. In addition, aryl fluorosulfates have also been widely applied as sustainable alternative to aryl halides in
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Published 09 Aug 2019

Identification of optimal fluorescent probes for G-quadruplex nucleic acids through systematic exploration of mono- and distyryl dye libraries

  • Xiao Xie,
  • Michela Zuffo,
  • Marie-Paule Teulade-Fichou and
  • Anton Granzhan

Beilstein J. Org. Chem. 2019, 15, 1872–1889, doi:10.3762/bjoc.15.183

Graphical Abstract
  • could not be obtained by this route, were synthesized through quaternization of the corresponding neutral styryl precursors with alkyl halides (Scheme 1C,D). Most dyes of the library were prepared and handled as iodide salts. However, in the case of very lipophilic dyes, the solubility of iodide salts
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Published 06 Aug 2019

A metal-free approach for the synthesis of amides/esters with pyridinium salts of phenacyl bromides via oxidative C–C bond cleavage

  • Kesari Lakshmi Manasa,
  • Yellaiah Tangella,
  • Namballa Hari Krishna and
  • Mallika Alvala

Beilstein J. Org. Chem. 2019, 15, 1864–1871, doi:10.3762/bjoc.15.182

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  • chemistry. The occurrence of an amide and/or ester bond is widely realized in organic molecules, proteins, natural products, pharmaceuticals, polymers and agrochemicals [1][2][3][4][5]. The conventional synthesis of amides involves the reaction of carboxylic acids or their derivatives such as acyl halides
  • [6][7], anhydrides [8], esters [9], and acyl azides [10] with amines by employing coupling reagents [11]. Alternative protocols include the Staudinger–Vilarrasa reaction [12], Schmidt reaction [13][14], Beckmann rearrangement [15], aminocarbonylation of aryl halides [16], Staudinger ligation [17
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Published 05 Aug 2019

Halide metathesis in overdrive: mechanochemical synthesis of a heterometallic group 1 allyl complex

  • Ross F. Koby,
  • Nicholas R. Rightmire,
  • Nathan D. Schley,
  • Timothy P. Hanusa and
  • William W. Brennessel

Beilstein J. Org. Chem. 2019, 15, 1856–1863, doi:10.3762/bjoc.15.181

Graphical Abstract
  • exchange represented in Equation 1 is complete varies widely with the system. In general, the larger the value of n, and the correspondingly increased amount of MX that is formed, the greater the driving force. Consequently, exchange will be assisted with higher valent M'Xn halides. Furthermore, although
  • reduced further by choosing M to be potassium rather than lithium; as an added benefit, the resulting potassium halides are less likely to contaminate the desired product. Without a solvent present and if M and M' are both univalent metals with similar electronegativity, complete exchange becomes
  • concerns place limits on the combinations of halides and alkali metals that could be feasibly studied in intra-alkali exchange experiments. For example, the fluorides have the largest heats of formation of the alkali halides, regardless of metal, but their high lattice energies make them typically
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Published 02 Aug 2019

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
  • reaction using xanthogenates, alkenes, and sulfonyl oxime ethers (Scheme 1, reaction 1) [21][22]. The reaction proceeds efficiently to provide good yields of α-alkoxyimino esters, potential precursors of lactams, lactones and β-keto esters. Since the three-component radical reaction involving alkyl halides
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Published 31 Jul 2019

Metal-free mechanochemical oxidations in Ertalyte® jars

  • Andrea Porcheddu,
  • Francesco Delogu,
  • Lidia De Luca,
  • Claudia Fattuoni and
  • Evelina Colacino

Beilstein J. Org. Chem. 2019, 15, 1786–1794, doi:10.3762/bjoc.15.172

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  • reactions of hydantoins [41][59]. However, also using this oxidant, we observed low conversions (31%) and the formation of significant amounts of byproducts, mainly halides and olefins (elimination byproducts). The use of liquid-assisted grinding (LAG) procedures [60][61][62] by adding small quantities of
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Published 25 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

Graphical Abstract
  • oxidation states (Cu(0), Cu(I), Cu(II), and Cu(III)). Copper has been known for a long time to act as a catalyst for cross-coupling reactions (Ullmann–Goldberg reaction), cyanation of aryl halides (Rosenmund–von Braun reaction), Hurtley reaction and intermolecular oxidative cyclization of haloalkynes [41
  • . The Pd-catalyzed Sonogashira reaction has successfully constructed arylated internal alkynes that are important intermediates in organic synthesis, molecular electronics and polymers [56]. C–N bond forming reactions between aryl halides and amines/amides/sulfonamides have been extensively studied in
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Published 19 Jul 2019

Synthesis of 9-O-arylated berberines via copper-catalyzed CAr–O coupling reactions

  • Qiaoqiao Teng,
  • Xinhui Zhu,
  • Qianqian Guo,
  • Weihua Jiang,
  • Jiang Liu and
  • Qi Meng

Beilstein J. Org. Chem. 2019, 15, 1575–1580, doi:10.3762/bjoc.15.161

Graphical Abstract
  • temperature, during which 9-O-methyl cleavage occurs. The resulting berberrubine (BBRB) then acts as a good precursor to 9-O-substituted derivatives through nucleophilic substitution reactions with alkyl halides (Scheme 1). By this route, not only long-chain alkyl substituents were installed, but also more
  • structure. Considering the great abundance of aryl halides, the method allows the preparation of more diverse BBR derivatives in the future. The relevant biological study of the newly synthesized compounds is currently underway in our laboratory. Synthetic pathway of 9-O-R BBR. Resonance of berberrubine
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Published 15 Jul 2019

Borylation and rearrangement of alkynyloxiranes: a stereospecific route to substituted α-enynes

  • Ruben Pomar Fuentespina,
  • José Angel Garcia de la Cruz,
  • Gabriel Durin,
  • Victor Mamane,
  • Jean-Marc Weibel and
  • Patrick Pale

Beilstein J. Org. Chem. 2019, 15, 1416–1424, doi:10.3762/bjoc.15.141

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  • coupling reactions of either terminal or organometallic alkynes with vinyl halides or of alkynyl halides with vinylic organometallics [20]. However, both routes may lead to mixtures of stereoisomers and synthetic approaches to stereodefined substituted α-enynes remain scarce and thus still represent a
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Published 27 Jun 2019

Selenophene-containing heterotriacenes by a C–Se coupling/cyclization reaction

  • Pierre-Olivier Schwartz,
  • Sebastian Förtsch,
  • Astrid Vogt,
  • Elena Mena-Osteritz and
  • Peter Bäuerle

Beilstein J. Org. Chem. 2019, 15, 1379–1393, doi:10.3762/bjoc.15.138

Graphical Abstract
  • , and potassium hydroxide as base in DMSO (Scheme 1). This method has been previously used for the synthesis of symmetrical diaryl selenides from aryl halides [28]. Attempts to use the corresponding 3,3’-dibromo-2,2’-bithiophene as starting material for the synthesis of either DTS 2 with the same
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Published 24 Jun 2019

Enantioselective Diels–Alder reaction of anthracene by chiral tritylium catalysis

  • Qichao Zhang,
  • Jian Lv and
  • Sanzhong Luo

Beilstein J. Org. Chem. 2019, 15, 1304–1312, doi:10.3762/bjoc.15.129

Graphical Abstract
  • tritylium salts with a chiral weakly coordinating metal-based phosphate anion could facilitate the asymmetric catalytic Diels–Alder reaction. To implement this strategy, different trityl phosphates or halides, Lewis acids, chiral metal phosphate and their combinations were examined in the model reaction of
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Published 14 Jun 2019

Alkylation of lithiated dimethyl tartrate acetonide with unactivated alkyl halides and application to an asymmetric synthesis of the 2,8-dioxabicyclo[3.2.1]octane core of squalestatins/zaragozic acids

  • Herman O. Sintim,
  • Hamad H. Al Mamari,
  • Hasanain A. A. Almohseni,
  • Younes Fegheh-Hassanpour and
  • David M. Hodgson

Beilstein J. Org. Chem. 2019, 15, 1194–1202, doi:10.3762/bjoc.15.116

Graphical Abstract
  • LDA and reaction at −78 °C during 12–72 h with a range of alkyl halides, including non-activated substrates, to give single diastereomers (at the acetonide) of monoalkylated tartrates 17, 24, 33a–f, 38a,b, 41 of R,R-configuration, i.e., a stereoretentive process (13–78% yields). Separable trans
  • (e.g., 7, Scheme 2) was originally reported by Seebach and co-workers for ‘activated’ (allylic, benzylic) alkyl halides [17][18][19]. If an alkylated tartrate 9 could be accessed from a silyloxy-substituted alkyl iodide 8 and subsequently oxidised (for example via a second tartrate enolate) with
  • work, which concluded that only especially reactive halides (methyl, benzylic, allylic) were feasible electrophiles; with iodoethane, 1-iodo-2-methylpropane and chloromethoxymethane no alkylation products were formed [17][18][19]. Given these rather discouraging observations in the context of our
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Published 31 May 2019

Insertion of [1.1.1]propellane into aromatic disulfides

  • Robin M. Bär,
  • Gregor Heinrich,
  • Martin Nieger,
  • Olaf Fuhr and
  • Stefan Bräse

Beilstein J. Org. Chem. 2019, 15, 1172–1180, doi:10.3762/bjoc.15.114

Graphical Abstract
  • nucleophiles also proceeds through a radical mechanism [14][15]. The reaction with alkyl halides, initially described by Michl et al. [16], has recently been further investigated by Anderson et al. (Scheme 1) [17]. Both groups showed that the BCP halide can be lithiated to further modify the products. The
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Published 28 May 2019

Synthesis of aryl cyclopropyl sulfides through copper-promoted S-cyclopropylation of thiophenols using cyclopropylboronic acid

  • Emeline Benoit,
  • Ahmed Fnaiche and
  • Alexandre Gagnon

Beilstein J. Org. Chem. 2019, 15, 1162–1171, doi:10.3762/bjoc.15.113

Graphical Abstract
  • ). For instance, the proton alpha to the sulfur can be removed by a strong base such as butyllithium, resulting in the cyclopropyllithium species 2. This carbanion can then react with alkyl halides to provide the corresponding alkylated species 3 which can then be opened up by treatment with mercuric
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Published 27 May 2019

Design of a double-decker coordination cage revisited to make new cages and exemplify ligand isomerism

  • Sagarika Samantray,
  • Sreenivasulu Bandi and
  • Dillip K. Chand

Beilstein J. Org. Chem. 2019, 15, 1129–1140, doi:10.3762/bjoc.15.109

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  • of Pd(NO3)2 with L1 at a 1:2 or 3:4 ratios afforded [Pd(L1)2](NO3)2 (3a) and [(NO3)2@Pd3(L1)4](NO3)4 (4a), respectively. The encapsulated NO3– ions of 4a undergo anion exchange with halides (F–, Cl– and Br– but not with I–) to form [(X)2@Pd3(L1)4](NO3)4 5a–7a. The coordination behaviour of ligand L1
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Published 21 May 2019

Electrophilic oligodeoxynucleotide synthesis using dM-Dmoc for amino protection

  • Shahien Shahsavari,
  • Dhananjani N. A. M. Eriyagama,
  • Bhaskar Halami,
  • Vagarshak Begoyan,
  • Marina Tanasova,
  • Jinsen Chen and
  • Shiyue Fang

Beilstein J. Org. Chem. 2019, 15, 1116–1128, doi:10.3762/bjoc.15.108

Graphical Abstract
  • , alkyl halides, α-halocarbonyls, vinylpurines, methides and maleimides cannot or are difficult to be incorporated into ODNs, or cannot be installed at the desired locations in the ODNs. For example, to synthesize oligos that contain the epigenetically modified 5-formylcytosine, the aldehyde group had to
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Published 20 May 2019

Multicomponent reactions (MCRs): a useful access to the synthesis of benzo-fused γ-lactams

  • Edorta Martínez de Marigorta,
  • Jesús M. de Los Santos,
  • Ana M. Ochoa de Retana,
  • Javier Vicario and
  • Francisco Palacios

Beilstein J. Org. Chem. 2019, 15, 1065–1085, doi:10.3762/bjoc.15.104

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  • reaction of propiolic acid and aryl halides [78]. Furthermore, the authors have been able to carry out the reaction in a sequential manner starting from propiolic acid and aryl iodides in the presence of caesium carbonate and a palladium catalyst. Next, addition of 2-iodobenzoic acid and ammonium acetate
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Published 08 May 2019

Heck- and Suzuki-coupling approaches to novel hydroquinone inhibitors of calcium ATPase

  • Robert J. Kempton,
  • Taylor A. Kidd-Kautz,
  • Soizic Laurenceau and
  • Stefan Paula

Beilstein J. Org. Chem. 2019, 15, 971–975, doi:10.3762/bjoc.15.94

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  • , a BHQ analogue and active SERCA inhibitor containing a side chain terminating in a leucine moiety. Results and Discussion The starting materials for the syntheses were the halides 4a,b (Scheme 1). Bromide 4a is commercially available. We investigated several ways to prepare the corresponding iodide
  • ) suggesting the presence of a small amount of the 3-tert-butyl isomer. The corresponding iodo analogue 5b was prepared following the procedure of Hayashi [14]. Although both halides 5a and 5b were now available to us, subsequent experiments determined that the iodo analogue offered us no advantage over the
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Published 24 Apr 2019

Halogen bonding and host–guest chemistry between N-alkylammonium resorcinarene halides, diiodoperfluorobutane and neutral guests

  • Fangfang Pan,
  • Mohadeseh Dashti,
  • Michael R. Reynolds,
  • Kari Rissanen,
  • John F. Trant and
  • Ngong Kodiah Beyeh

Beilstein J. Org. Chem. 2019, 15, 947–954, doi:10.3762/bjoc.15.91

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  • high Z’-value structure. Disorder is not inherently a feature of a poor structure, disorder instead indicates the complexity of the dynamic solution state. Solving it, however, remains a challenge. N-Alkylammonium resorcinarene halides (NARXs) have been extensively studied in our groups as multidentate
  • groups. Halides such as chloride and bromides can have high coordination numbers and as such can simultaneously be involved in both HB and XB to form ordered assemblies [32][33]. When the already hydrogen-bonded halides in NARXs are involved in XB, changes in the 1H NMR chemical shifts of the –OH and
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Published 18 Apr 2019

Towards the preparation of synthetic outer membrane vesicle models with micromolar affinity to wheat germ agglutinin using a dialkyl thioglycoside

  • Dimitri Fayolle,
  • Nathalie Berthet,
  • Bastien Doumeche,
  • Olivier Renaudet,
  • Peter Strazewski and
  • Michele Fiore

Beilstein J. Org. Chem. 2019, 15, 937–946, doi:10.3762/bjoc.15.90

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  • ]. Some of them have been obtained by coupling protected glycosyl thiolates and n-alkyl halides [14][15][16]. Moreover, mechanochemical thioglycosylation of glycosyl acetates was used for the synthesis of n-alkyl 1-thio-α--glycosides as carbohydrate mesogens [17]. Unfortunately, the preparation of alkyl
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Published 17 Apr 2019

Synthesis and SAR of the antistaphylococcal natural product nematophin from Xenorhabdus nematophila

  • Frank Wesche,
  • Hélène Adihou,
  • Thomas A. Wichelhaus and
  • Helge B. Bode

Beilstein J. Org. Chem. 2019, 15, 535–541, doi:10.3762/bjoc.15.47

Graphical Abstract
  • aluminium chloride (AlCl3) in DCM to give compounds 14 and 21. Subsequent reduction was achieved with triethylsilane (Et3SiH) in TFA to give 15 and 22. For the synthesis of the primary amine, halides 15 and 22 were converted in a Gabriel synthesis with potassium phthalimide in DMF to the appropriate
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Published 25 Feb 2019

Synthesis and selected transformations of 2-unsubstituted 1-(adamantyloxy)imidazole 3-oxides: straightforward access to non-symmetric 1,3-dialkoxyimidazolium salts

  • Grzegorz Mlostoń,
  • Małgorzata Celeda,
  • Katarzyna Urbaniak,
  • Marcin Jasiński,
  • Vladyslav Bakhonsky,
  • Peter R. Schreiner and
  • Heinz Heimgartner

Beilstein J. Org. Chem. 2019, 15, 497–505, doi:10.3762/bjoc.15.43

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  • -oxide using two different alkyl halides (R1X and R2X; R1, R2 = Me, Et, n-Bu, or allyl) as alkylating agents, leading to non-symmetric 1,3-dialkoxyimidazolium salts, was also reported [26]. In the present study, imidazole N-oxides 7 bearing either an adamantyloxy or adamantyl moiety at N(1) were smoothly
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Published 19 Feb 2019

Synthesis and fluorescent properties of N(9)-alkylated 2-amino-6-triazolylpurines and 7-deazapurines

  • Andrejs Šišuļins,
  • Jonas Bucevičius,
  • Yu-Ting Tseng,
  • Irina Novosjolova,
  • Kaspars Traskovskis,
  • Ērika Bizdēna,
  • Huan-Tsung Chang,
  • Sigitas Tumkevičius and
  • Māris Turks

Beilstein J. Org. Chem. 2019, 15, 474–489, doi:10.3762/bjoc.15.41

Graphical Abstract
  • available 2,6-dichloropurine (1a) by subsequent alkylation of the N(9) position and azido group introduction in C(2) and C(6) positions. The N(9) position of purine was alkylated in two different ways: 1) using alkyl halides in the presence of a strong base, and 2) using alcohols under Mitsunobu conditions
  • . In the first approach (method A, Scheme 1), the purine was deprotonated with a base (NaH or K2CO3) and alkylated with alkyl halides such as 1-iodoheptane, 1-bromononane and 1-bromododecane. The main disadvantages of this approach are suboptimal yields, which varied from 48% to 52%, and long reaction
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Published 15 Feb 2019

Syntheses and chemical properties of β-nicotinamide riboside and its analogues and derivatives

  • Mikhail V. Makarov and
  • Marie E. Migaud

Beilstein J. Org. Chem. 2019, 15, 401–430, doi:10.3762/bjoc.15.36

Graphical Abstract
  • adopted to access NR+ and NMN. 2.1. Glycosylation of nicotinamide As mentioned above, glycosylation of Nam may be performed either by using halosugars, i.e., 2,3,5-tri-O-acyl-D-ribofuranosyl halides, or by applying 1,2,3,5-tetra-O-acyl-D-ribofuranoses. The latter fully acylated sugars require different
  • reaction conditions for the glycosylation of nicotinamide. Historically, 2,3,5-tri-O-acyl-D-ribofuranosyl halides were used first (so called the halo route) and will be considered in the first place. 2.1.1. Glycosylation with 2,3,5-tri-O-acylribofuranosyl halides: The first works on the chemical synthesis
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Published 13 Feb 2019
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