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On solid phase

To date a number of reactions have been carried out in ionic liquids [for examples, see Dell Anna et al. J Chem Soc, Chem Commun 434 2002 Nara, Harjani and Salunkhe Tetrahedron Lett 43 1127 2002 Semeril et al. J Chem Soc Chem Commun 146 2002 Buijsman, van Vuuren and Sterrenburg Org Lett 3 3785 2007]. These include Diels-Alder reactions, transition-metal mediated catalysis, e.g. Heck and Suzuki coupling reactions, and olefin metathesis reactions. An example of ionic liquid acceleration of reactions carried out on solid phase is given by Revell and Ganesan [Org Lett 4 3071 2002]. [Pg.77]

A SAMPLE OF REVIEWS ON SOLID PHASE SYNTHESIS General... [Pg.78]

Transformations of heterocycles on solid-phase catalysts 97T5643. [Pg.209]

Organic Synthesis on Solid Phase. Supports, Linkers, Reactions... [Pg.335]

If small or medium libraries for lead optimization are demanded and all synthetic products are to be screened individually, most often parallel synthesis is the method of choice. Parallel syntheses can be conducted in solution, on solid phase, with polymer-assisted solution phase syntheses or with a combination of several of these methods. Preferably, parallel syntheses are automated, either employing integrated synthesis robots or by automation of single steps such as washing, isolation, or identification. The latter concept often allows a more flexible and less expensive automation of parallel synthesis. [Pg.383]

Zaragoza Dorwald F (2000) Organic synthesis on solid phase. Wiley, Weinheim. [Pg.384]

Scheme 7 Microwave-assisted Ugi reaction on solid phase... Scheme 7 Microwave-assisted Ugi reaction on solid phase...
Microwave-Assisted Substitution of Imidazole C-2 on Solid-Phase. 122... [Pg.80]

Abstract Current microwave-assisted protocols for reaction on solid-phase and soluble supports are critically reviewed. The compatibility of commercially available polymer supports with the relatively harsh conditions of microwave heating and the possibilities for reaction monitoring are discussed. Instrmnentation available for microwave-assisted solid-phase chemistry is presented. This review also summarizes the recent applications of controlled microwave heating to sohd-phase and SPOT-chemistry, as well as to synthesis on soluble polymers, fluorous phases and functional ionic liquid supports. The presented examples indicate that the combination of microwave dielectric heating with solid- or soluble-polymer supported chemistry techniques provides significant enhancements both at the level of reaction rate and ease of purification compared to conventional procedures. [Pg.80]

Fig. 17 Rapid preparation of imidazoles and thiazoles on solid-phase. Reagents a RNH2, (CH30CH2)2, MW 220°C, 15min, closed vessel b TFA in CH2CI2, rt, 60min. R = aliphatic, benzyl, or arylamines or arylhydrazine... Fig. 17 Rapid preparation of imidazoles and thiazoles on solid-phase. Reagents a RNH2, (CH30CH2)2, MW 220°C, 15min, closed vessel b TFA in CH2CI2, rt, 60min. R = aliphatic, benzyl, or arylamines or arylhydrazine...
Fig. 21 Microwave-promoted multicomponent synthesis of polysubstituted thiophenes on solid-phase. Reagents and conditions a RCOCH2R (R = H, Me, Et, Bn R = Me, i-Bu, i-Pn, Ph, Bn, cyclohexyl), Ss, DBU, toluene, MW 120 °C, 20 min, closed vessel, 100% b R"COCl (R" = Me, Pr, Ph or COOMe), diisopropylethylamine, toluene, MW 100 °C, 10 min, closed vessel c TEA, H2O, CH2CI2, rt, 2h... Fig. 21 Microwave-promoted multicomponent synthesis of polysubstituted thiophenes on solid-phase. Reagents and conditions a RCOCH2R (R = H, Me, Et, Bn R = Me, i-Bu, i-Pn, Ph, Bn, cyclohexyl), Ss, DBU, toluene, MW 120 °C, 20 min, closed vessel, 100% b R"COCl (R" = Me, Pr, Ph or COOMe), diisopropylethylamine, toluene, MW 100 °C, 10 min, closed vessel c TEA, H2O, CH2CI2, rt, 2h...
Microwave-Promoted Synthesis of Bicyclic Pyrimidine Derivatives on Solid-Phase... [Pg.102]

To perform Diels-Alder reactions on solid phase, the 2(lH)-pyrazinone scaffold is linked to a suitable support via its amide nitrogen atom. While N-l-substituted pyrazinones are readily accessible by the choice of an appropriate amine, it is not possible to prepare N-l-unsubstituted pyrazinones using the general strategy as previously outlined in the introduction. How-... [Pg.295]

To perform the cycloaddition on solid-phase, N-l-unprotected pyrazi-nones were coupled with the solid support by treatment of the brominated linker in DMF for 6h at ambient temperature, using CS2CO3 as a base (Scheme 43). The reaction time for complete loading could be dramatically shortened to only 5 min under microwave irradiation at a pre-selected maximum temperature of 70 °C. [Pg.298]

Scheme 7.5 Enzymatic synthesis of dipeptides on solid phase. Scheme 7.5 Enzymatic synthesis of dipeptides on solid phase.
A recent method, still in development, for determining total 4-nitrophenol in the urine of persons exposed to methyl parathion is based on solid phase microextraction (SPME) and GC/MS previously, the method... [Pg.170]

A recent method, still in development, for determining total 4-nitrophenol in the urine of persons exposed to methyl parathion is based on solid phase microextraction (SPME) and GC/MS previously, the method has been used in the analysis of food and environmental samples (Guidotti et al. 1999). The method uses a solid phase microextraction fiber, is inserted into the urine sample that has been hydrolyzed with HCl at 50° C prior to mixing with distilled water and NaCl and then stirred (1,000 rpm). The fiber is left in the liquid for 30 minutes until a partitioning equilibrium is achieved, and then placed into the GC injector port to desorb. The method shows promise for use in determining exposures at low doses, as it is very sensitive. There is a need for additional development of this method, as the measurement of acetylcholinesterase, the enzyme inhibited by exposure to organophosphates such as methyl parathion, is not an effective indicator of low-dose exposures. [Pg.177]

KAYALI-SAYADI M N, RUBIO-BARROSO S, CUESTA-JIMENEZ M P and PALO-DIEZ L M (1998) Rapid determination of polycyclic aromatic hydrocarbons in tea infusion samples by high-performance liquid chromatography and fluorimetric detection based on solid-phase extraction , 123, 2145-8. [Pg.153]

Five synthetic and five natural colorants were identified and quantified in lyo-philized dairy products and fatty foods using an automatic method based on solid phase extraction using a stationary phase followed by RP-HPLC C,g columns for the sequential retention of colorants and diode array detection. Lyophilization of the samples coupled with the separation procedure provided clean extracts despite the complexity of the food matrices and preserved the sample for at least 2 months without changes in colorant concentrations. The detection limits achieved for the colorants were found in a wide range from 0.03 to 75 pg/g of the lyophilized sample, according to the limits established by the European Union. ... [Pg.542]

When pushed to the limit by overriding human health concerns, residue chemists have achieved detection limits of Ippt (Ingkg ) or even into the low ppqr (1 pg kg ) range. An example at the 1 ppt level is provided by methods for 2,3,7,8-tetrachlorodibenzodioxin (TCDD) in milk and TCDD in adipose tissue. Eor relatively clean matrices such as water and air, preconcentration on solid-phase adsorbents followed by GC or gas chromatography/mass spectrometry (GC/MS) can provide detection limits of 1 ng m and less for air (examples in Majewski and Capel ) and 1 ngL and less for water (examples in Larson et A summary of units of weight and concentration used to express residue data is given in Table 1. [Pg.4]

The synthesis of aldehydes and ketoamides was performed on solid phase as well as in solution (Scheme 2.2). A semicarbazone linker (6) was employed for the assembly of the aldehydes on solid phase whereas the corresponding aminoalcohol was coupled in solution to the tripeptide and oxidized to the aldehyde, which produced epimeric mixtures [137]. For the synthesis of the ketoamides, hydroxyester THP resins were used as solid support ((7), Scheme 2.2) [138]. In solution the peptide bond was formed using an aminohydroxycarboxylic acid building block [138, 147]. Oxidation of the free hydroxyl group yielded the final inhibitors ((8), Scheme 2.2). [Pg.95]


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Baylis-Hillman Reaction on the Solid Phase

Bridge methods in non-competitive enzyme immunoassays with antigens immobilized on the solid phase

C-X-Y-Fragment (Nitrile Oxide on Solid Phase)

Chemistry Applications on a Solid Phase (CCSP)

Chemistry on Solid Phases

Combinatorial Synthesis on Solid Phases

Cross-metathesis on Solid Phase

Cyclization on solid phase

Diversity-Oriented Synthesis on Solid Phase

Effects of Sulfate Reduction on Sedimentary Solid Phases

Glycopeptide Synthesis in Solution and on the Solid Phase

Glycopeptide Synthesis on the Solid Phase

Glycopeptides synthesis on the solid phase

Glycosidation on solid phase

Glycosidations on a Solid Phase

High-Pressure Domino Cycloaddition Reactions on the Solid Phase

Immobilization on solid phase,

Non-competitive assays with antibodies immobilized on the solid phase

Non-competitive assays with complement immobilized on the solid phase

On solids

On-line solid phase extraction

Reactions on solid phase

Reviews on Linkers in Solid-Phase Synthesis

SOLID-PHASE ORGANIC SYNTHESIS ON RADIATION-GRAFTED POLYMER SURFACES APPLICATION OF SYNPHASE CROWNS TO MULTIPLE PARALLEL SYNTHESES

Small Organic Molecules on Solid Phase Target Selection and Solution Studies

Supported on a Solid Phase

Synthesis of Trisubstituted Indoles on a Solid Phase

The Statistical Point of View on Solid Phase Reactions

Titration with urease on the solid phase

Tools for On-Bead Monitoring and Analysis in Solid-Phase Oligosaccharide Synthesis

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