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Search for "hydration" in Full Text gives 119 result(s) in Beilstein Journal of Organic Chemistry.

Presence or absence of a novel charge-transfer complex in the base-catalyzed hydrolysis of N-ethylbenzamide or ethyl benzoate

  • Shinichi Yamabe,
  • Wei Guan and
  • Shigeyoshi Sakaki

Beilstein J. Org. Chem. 2013, 9, 185–196, doi:10.3762/bjoc.9.22

Graphical Abstract
  • water molecules in the first hydration shell of an alanine molecule was found to be seven [44]. Thus, more than seven water molecules would be required to examine the reaction paths of hydrolyses reliably. However, less than six water molecules are included in the precedent computational studies [26][27
  • TS1(es) is enlarged appreciably (= +17.87 kcal/mol) in spite of the positional assumption (ii) in Figure 7. Thus, the counter ion works unfavorably on the rate-determining step TS1(es). The Na+ ion has a very large hydration energy (= −97 kcal/mol), and the cation needs to be surrounded by many water
  • molecules in the hydration shell far from the reaction region. Figure 8 shows energy changes for the amide hydrolysis of Figure 5. Those of Na+-containing paths in the system, Ph–C(=O)–NH–Et + NaOH(H2O)16 in Figure S4 (Supporting Information File 1), are also shown in green. In energies of the Na+-free
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Published 29 Jan 2013

Antifreeze glycopeptide diastereomers

  • Lilly Nagel,
  • Carsten Budke,
  • Axel Dreyer,
  • Thomas Koop and
  • Norbert Sewald

Beilstein J. Org. Chem. 2012, 8, 1657–1667, doi:10.3762/bjoc.8.190

Graphical Abstract
  • position for adsorption to the ice surface; a similar situation applies to the retro-inverso peptide 7. Moreover, these conformational changes may possibly also alter the water hydration shell around the peptide, which has been suggested to be essential for the antifreeze activity of AFGPs and AFGP
  • backbone as well as on the hydration shell around the peptide. Experimental All chemicals were acquired from Sigma Aldrich (Hamburg, Germany), Acros (Geel, Belgium), Alfa Aesar (Ward Hill, USA) and VWR (Darmstadt, Germany) and were employed without additional purification. Moisture- and air-sensitive
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Published 01 Oct 2012

Mannose-decorated cyclodextrin vesicles: The interplay of multivalency and surface density in lectin–carbohydrate recognition

  • Ulrike Kauscher and
  • Bart Jan Ravoo

Beilstein J. Org. Chem. 2012, 8, 1543–1551, doi:10.3762/bjoc.8.175

Graphical Abstract
  • functionalized by self-assembly [27]. To this end, cyclodextrins are modified with long alkyl chains (“tails”) and short oligo(ethylene glycol) head groups. These macrocyclic amphiphiles form unilamellar bilayer vesicles in aqueous solution upon hydration of a thin film cast by evaporation from organic solution
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Published 17 Sep 2012

Synthesis of a novel chemotype via sequential metal-catalyzed cycloisomerizations

  • Bo Leng,
  • Stephanie Chichetti,
  • Shun Su,
  • Aaron B. Beeler and
  • John A. Porco Jr.

Beilstein J. Org. Chem. 2012, 8, 1338–1343, doi:10.3762/bjoc.8.153

Graphical Abstract
  • , evaluating a number of metal catalysts in the presence of diethyl malonate. From this focused reaction screen we identified three types of reactivity: (1) no reaction; (2) alkyne hydration (4); and (3) cycloisomerization leading to isochromene (5) (Figure 1). Many catalysts resulted in no reaction, including
  • ones that might have been expected to catalyze cycloisomerization, such as AgOTf. Two catalysts, Cu(OTf)2 and Pd(MeCN)2Cl2, afforded only hydration of the alkyne. Interestingly, hydration was regioselective, which is possibly due to direction from the ether oxygen. We were most interested in metal
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Published 20 Aug 2012

Continuous-flow hydration–condensation reaction: Synthesis of α,β-unsaturated ketones from alkynes and aldehydes by using a heterogeneous solid acid catalyst

  • Magnus Rueping,
  • Teerawut Bootwicha,
  • Hannah Baars and
  • Erli Sugiono

Beilstein J. Org. Chem. 2011, 7, 1680–1687, doi:10.3762/bjoc.7.198

Graphical Abstract
  • Magnus Rueping Teerawut Bootwicha Hannah Baars Erli Sugiono Institute of Organic Chemistry, RWTH Aachen University, Landoltweg 1, D-52074 Aachen, Germany 10.3762/bjoc.7.198 Abstract A simple, practical and efficient continuous-flow hydration–condensation protocol was developed for the synthesis
  • of valuable differently substituted chalcones. Starting from commercially available alkynes and aldehydes, a continuous-flow hydration–condensation protocol leads to the desired products in good to excellent yields. The reactions were sequentially introduced into the flow cell and performed several
  • General procedure for hydration–condensation reaction of phenylacetylene (1a) and benzaldehyde (2a). A solution of phenylacetylene (1a) (0.4 mmol) and benzaldehyde (2a) (1.6 mmol) was pumped through the flow cell filled with amberlyst-15 resin (16–50 mesh) (10.0 g) and dry 1,2-dichloroethane at a flow
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Published 15 Dec 2011

Gold-catalyzed propargylic substitutions: Scope and synthetic developments

  • Olivier Debleds,
  • Eric Gayon,
  • Emmanuel Vrancken and
  • Jean-Marc Campagne

Beilstein J. Org. Chem. 2011, 7, 866–877, doi:10.3762/bjoc.7.99

Graphical Abstract
  • , whereas in refluxing dichloroethane the substitution product 16 led to a mixture of products via triple bond hydration to give 17 [49][50][56] and furan formation to afford 18 (Scheme 7). The furan may possibly result from intramolecular addition of the enol form of acetylacetone. Related experiments have
  • obtain these isoxazolines would be to realize the propargylic substitution first of all (and consume all of the hydroxylamine) and subsequently perform the cyclization. Since iron(III) was known to be inefficient in the hydration of triple bonds [64][65], we anticipated that its use would lead only to
  • even after prolonged reaction at reflux (Scheme 14). Very recently, Darcel described the iron(III) hydration of terminal alkynes [65]. These conditions were attempted to cyclize 22a but in our hands only extensive decomposition was observed. We thus turned our attention to gold-catalyzed cyclization of
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Published 28 Jun 2011

Gold-catalyzed oxidation of arylallenes: Synthesis of quinoxalines and benzimidazoles

  • Dong-Mei Cui,
  • Dan-Wen Zhuang,
  • Ying Chen and
  • Chen Zhang

Beilstein J. Org. Chem. 2011, 7, 860–865, doi:10.3762/bjoc.7.98

Graphical Abstract
  • /hydration and oxidative cleavage of allenes to form α-diketones and aldehydes, and the synthesis of quinoxalines and benzimidazoles via the condensation of the resulting α-diketones and aldehydes with benzene-1,2-diamine [45][46][47][48][49][50][51][52][53][54][55][56]. Results and Discussion Our initial
  • of quinoxalines and benzimidazoles via the condensation of the resulting α-diketones and aldehydes with benzene-1,2-diamine was achieved in high yields. This reaction appears to proceed via oxidation/hydration and oxidative cleavage of the allene, and investigations into the mechanism of this
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Published 24 Jun 2011

Fine-tuning alkyne cycloadditions: Insights into photochemistry responsible for the double-strand DNA cleavage via structural perturbations in diaryl alkyne conjugates

  • Wang-Yong Yang,
  • Samantha A. Marrone,
  • Nalisha Minors,
  • Diego A. R. Zorio and
  • Igor V. Alabugin

Beilstein J. Org. Chem. 2011, 7, 813–823, doi:10.3762/bjoc.7.93

Graphical Abstract
  • triple bond. The cyclized product, benzoxazepine 13, and the ketone product 14 were isolated. Whereas 13 was produced by a 7-endo cyclization (unprecedented in these systems), the ketone 14 can be formed either by direct hydration of the alkyne or by a known pathway that involves the corresponding six
  • -membered product, a benzoxazine. The formation of benzoxazines has been previously reported by Roberts and coworkers, who suggested cyclization via triplet excitation following hydration [59][60][61][62]. The presence of vinyl peaks at 6.2 and 5.9 ppm in the reaction mixture and their quick disappearance
  • undergoes further photorearrangement via a formal 1,3-shift. Photocycloaddition of amido acetylenes with 1,4-CHD. Possible mechanism for photochemical hydration of diaryl acetylene moiety catalyzed by the ortho-amide substituent. Stern–Volmer quenching constants (Et3N as a quencher) and singlet lifetimes
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Published 16 Jun 2011

Gold-catalyzed heterocyclizations in alkynyl- and allenyl-β-lactams

  • Benito Alcaide and
  • Pedro Almendros

Beilstein J. Org. Chem. 2011, 7, 622–630, doi:10.3762/bjoc.7.73

Graphical Abstract
  • -azetidinone nucleus [66][67]. Treatment of the terminal alkyne 35a with the catalytic system AuCl3/PTSA gave the desired ketal 36a. Appreciable amounts of a polar ketone arising from alkyne hydration were also produced. Fortunately, the [AuClPPh3]/AgOTf/PTSA system demonstrated better activity. Interestingly
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Published 17 May 2011

pH-Responsive chromogenic-sensing molecule based on bis(indolyl)methene for the highly selective recognition of aspartate and glutamate

  • Litao Wang,
  • Xiaoming He,
  • Yong Guo,
  • Jian Xu and
  • Shijun Shao

Beilstein J. Org. Chem. 2011, 7, 218–221, doi:10.3762/bjoc.7.29

Graphical Abstract
  • /deprotonation of, the indolyl moiety modulate the internal charge transfer (ICT) state of bis(indolyl)methene and give rise to large color changes. In aqueous solution, the effective recognition based on strong hydrogen bonding is hardly achieved because of the strong hydration to hydrogen bonding sites of both
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Published 16 Feb 2011

A short and efficient synthesis of valsartan via a Negishi reaction

  • Samir Ghosh,
  • A. Sanjeev Kumar and
  • G. N. Mehta

Beilstein J. Org. Chem. 2010, 6, No. 27, doi:10.3762/bjoc.6.27

Graphical Abstract
  • and arteries causes the tissues to constrict. AT-II receptors are activated by the octapeptide AT-II. AT-II helps to maintain constant blood pressure [1] despite fluctuations in a person’s state of hydration, sodium intake and other physiological variables. AT-II also performs the regulatory tasks of
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Published 18 Mar 2010

Solvent-free and time-efficient Suzuki–Miyaura reaction in a ball mill: the solid reagent system KF–Al2O3 under inspection

  • Franziska Bernhardt,
  • Ronald Trotzki,
  • Tony Szuppa,
  • Achim Stolle and
  • Bernd Ondruschka

Beilstein J. Org. Chem. 2010, 6, No. 7, doi:10.3762/bjoc.6.7

Graphical Abstract
  • these results, materials were stored in a desiccator over KOH and vacuum for further applications to avoid uncontrollable uptake of water as indicated in the procedures of Kabalka et al. (“exposed to air over a period of days to allow for hydration of the surface”) [33] as well as for preventing the
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Published 22 Jan 2010

Enantioselective synthesis of tricyclic amino acid derivatives based on a rigid 4-azatricyclo[5.2.1.02,6]decane skeleton

  • Matthias Breuning,
  • Tobias Häuser,
  • Christian Mehler,
  • Christian Däschlein,
  • Carsten Strohmann,
  • Andreas Oechsner and
  • Holger Braunschweig

Beilstein J. Org. Chem. 2009, 5, No. 81, doi:10.3762/bjoc.5.81

Graphical Abstract
  • of 11 delivered the exo-configured alcohol rac-12, which was oxidized with PCC furnishing rac-9 in 79% yield. The asymmetric synthesis of the ketone 9 was realized by enantioselective hydration of the meso-alkene 11 using Hayashi’s method (Scheme 2) [25][26][27][28][29][30]: Hydrosilylation with
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Published 21 Dec 2009

1-(4-Alkyloxybenzyl)-3-methyl-1H-imidazol-3-ium organic backbone: A versatile smectogenic moiety

  • William Dobbs,
  • Laurent Douce and
  • Benoît Heinrich

Beilstein J. Org. Chem. 2009, 5, No. 62, doi:10.3762/bjoc.5.62

Graphical Abstract
  • of the anion but no real tendency can be extracted as a function of chain length. In all series the general order of stability order is SCN− ≈ Br− < BF4− ≈ PF6− < CF3SO3− < (CF3SO2)2N−. To avoid any phenomenon related to the sample preparation (purification, crystallisation, hydration) our reported
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Published 06 Nov 2009

Synthesis and properties of calix[4]arene telluropodant ethers as Ag+ selective sensors and Ag+, Hg2+ extractants

  • Yang Lu,
  • Yuanyuan Li,
  • Song He,
  • Yan Lu,
  • Changying Liu,
  • Xianshun Zeng and
  • Langxing Chen

Beilstein J. Org. Chem. 2009, 5, No. 59, doi:10.3762/bjoc.5.59

Graphical Abstract
  • of ionophore-based ISEs [54] and traditional Ag2S-based [58][59] ISE is largely eliminated in the present of ISEs (logK≤−1.4). It is reasoned that those ions with high hydration energies, such as Na+, K+, NH4+, Ca2+, Mg2+, Pb2+ and most of divalent transition metal ions, can not strongly interact
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Published 28 Oct 2009

A convenient method for preparing rigid-core ionic liquid crystals

  • Julien Fouchet,
  • Laurent Douce,
  • Benoît Heinrich,
  • Richard Welter and
  • Alain Louati

Beilstein J. Org. Chem. 2009, 5, No. 51, doi:10.3762/bjoc.5.51

Graphical Abstract
  • avoid possible effects of hydration of the materials, all were dried in vacuo before X-ray and DSC analyses. The phase transition temperatures and the corresponding enthalpy changes derived for compounds 1a–e are compiled in Table 2, while typical results are displayed in Figure 5. The high stability of
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Published 07 Oct 2009

Radical cascades using enantioenriched 7-azabenzonorbornenes and their applications in synthesis

  • David M. Hodgson and
  • Leonard H. Winning

Beilstein J. Org. Chem. 2008, 4, No. 38, doi:10.3762/bjoc.4.38

Graphical Abstract
  • pyrrolidine. Ring-opening–hydration–oxidation of azacycle 8. Preparation of trisubstituted pyrrolidine (+)-36. Preparation of pyrrolidine diester (+)-35 from Vince’s lactam 37. Acid-catalysed ring-opening–oxidation of azacycle (+)-8. Birch reduction of (+)-8 and 10. Supporting Information Supporting
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Published 24 Oct 2008

End game strategies towards the total synthesis of vibsanin E, 3-hydroxyvibsanin E, furanovibsanin A, and 3-O-methylfuranovibsanin A

  • Brett D. Schwartz,
  • Craig M. Williams and
  • Paul V. Bernhardt

Beilstein J. Org. Chem. 2008, 4, No. 34, doi:10.3762/bjoc.4.34

Graphical Abstract
  • methylated furans using catalytic amounts of mercury triflate. Although verification of this protocol was undertaken on a cycloheptanone derivative, substrate 39 failed to give the desired furan 42 (Scheme 6). Instead, hydration was observed as the major reaction pathway (i.e. 40) with furan 41 being
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Published 08 Oct 2008

The enantiospecific synthesis of (+)-monomorine I using a 5-endo- trig cyclisation strategy

  • Malcolm B. Berry,
  • Donald Craig,
  • Philip S. Jones and
  • Gareth J. Rowlands

Beilstein J. Org. Chem. 2007, 3, No. 39, doi:10.1186/1860-5397-3-39

Graphical Abstract
  • -mediated hydrolysis led to formation of the N-benzoylaminosulfone 11, presumably by a sequence involving ring-opening by elimination, hydration of the electron-deficient alkenyl sulfone double bond and retro-aldol-like fragmentation. Reductive deprotection proved to be a more fruitful avenue of study
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Published 08 Nov 2007
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