Roshchin, A. I.’s team published research in Doklady Akademii Nauk in 334 | CAS: 312-40-3

Doklady Akademii Nauk published new progress about 312-40-3. 312-40-3 belongs to catalysis-chemistry, auxiliary class Organic Silicones, name is Difluorodiphenylsilane, and the molecular formula is C12H10F2Si, COA of Formula: C12H10F2Si.

Roshchin, A. I. published the artcilePalladium-catalyzed reactions of diphenyldifluorosilane and diphenyldiethoxysilane with aryl halides in aqueous dimethylformamide, COA of Formula: C12H10F2Si, the publication is Doklady Akademii Nauk (1994), 334(5), 602-4, database is CAplus.

Cross-coupling reactions of ArBr (Ar = e.g., 2-O2NC6H4, 4-AcC6H4, 2-KO2CC6H4) with Ph2SiF2 in presence of 2 mol % PdCl2 and KF in aqueous DMF at 120¡ã afforded high yields of the corresponding biaryls ArPh (up to 95%). Reaction of 4-IC6H4Me with Ph2Si(OEt)2 in presence of PdCl2 and KF afforded up to 71% 4-MeC6H4Ph.

Doklady Akademii Nauk published new progress about 312-40-3. 312-40-3 belongs to catalysis-chemistry, auxiliary class Organic Silicones, name is Difluorodiphenylsilane, and the molecular formula is C12H10F2Si, COA of Formula: C12H10F2Si.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Andres, Miriam’s team published research in Bioorganic & Medicinal Chemistry Letters in 24 | CAS: 421-49-8

Bioorganic & Medicinal Chemistry Letters published new progress about 421-49-8. 421-49-8 belongs to catalysis-chemistry, auxiliary class Trifluoromethyl,Fluoride,Amine,Aliphatic hydrocarbon chain, name is 1,1,1-Trifluoropropan-2-amine, and the molecular formula is C3H6F3N, Product Details of C3H6F3N.

Andres, Miriam published the artcileStructure-activity relationships and structure-kinetic relationships of pyrrolopiperidinone acetic acids as CRTh2 antagonists, Product Details of C3H6F3N, the publication is Bioorganic & Medicinal Chemistry Letters (2014), 24(21), 5111-5117, database is CAplus and MEDLINE.

Pyrrolopiperidinone acetic acids, e.g. I [R = Me, Et, Ph, etc.] were identified as highly potent CRTh2 receptor antagonists. In addition, many of these compounds displayed slow-dissociation kinetics from the receptor. Structure-kinetic relationship studies allowed optimization of the kinetics to give potent analogs with long receptor residence half-lives of up to 23 h. Low permeability was a general feature of this series, however oral bioavailability could be achieved through the use of ester prodrugs.

Bioorganic & Medicinal Chemistry Letters published new progress about 421-49-8. 421-49-8 belongs to catalysis-chemistry, auxiliary class Trifluoromethyl,Fluoride,Amine,Aliphatic hydrocarbon chain, name is 1,1,1-Trifluoropropan-2-amine, and the molecular formula is C3H6F3N, Product Details of C3H6F3N.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Datta, Mrityunjoy’s team published research in Synthetic Communications in 42 | CAS: 19117-31-8

Synthetic Communications published new progress about 19117-31-8. 19117-31-8 belongs to catalysis-chemistry, auxiliary class Oxidant, name is N-(tert-Butyl)-S-phenylthiohydroxylamine, and the molecular formula is C10H15NS, Computed Properties of 19117-31-8.

Datta, Mrityunjoy published the artcileFast and efficient synthesis of sulfinamides by the oxidation of sulfenamides using potassium fluoride and m-chloroperoxybenzoic acid, Computed Properties of 19117-31-8, the publication is Synthetic Communications (2012), 42(12), 1760-1769, database is CAplus.

A procedure for the synthesis of N-alkyl-, N-cycloalkyl-, N,N-dialkyl-, and N-arylarenesulfinamides from the corresponding sulfenamides using KF/m-chloroperoxybenzoic acid in CH3CN-H2O was described. High efficiency (fast reactions, ease of manipulation, and good yields) and absence of over-oxidation are the major advantageous features of this protocol.

Synthetic Communications published new progress about 19117-31-8. 19117-31-8 belongs to catalysis-chemistry, auxiliary class Oxidant, name is N-(tert-Butyl)-S-phenylthiohydroxylamine, and the molecular formula is C10H15NS, Computed Properties of 19117-31-8.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Rudinger-Adler, E.’s team published research in Arzneimittel-Forschung in 29 | CAS: 31719-76-3

Arzneimittel-Forschung published new progress about 31719-76-3. 31719-76-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 4-(Phenoxymethyl)benzoic acid, and the molecular formula is C14H12O3, Quality Control of 31719-76-3.

Rudinger-Adler, E. published the artcileSynthesis of several phenoxymethylphenyl derivatives with local anesthetic activity, Quality Control of 31719-76-3, the publication is Arzneimittel-Forschung (1979), 29(4), 591-4, database is CAplus and MEDLINE.

A series of 4-(phenoxymethyl)procaine derivatives, 4-PhOCH2C6H4QCH2CH2NR2 (I; NR2 = NEt2, NBu2, 4-methyl-1-piperazinyl, Q = CO2; NR2 = NEt2, Q = CO2, CONH, COCH2, OCH2), were prepared and evaluated for local anesthetic activity. The local anesthetic activity decreased in the stated order of NR2 in the 1st series of I and in the stated order of Q in the 2nd series.

Arzneimittel-Forschung published new progress about 31719-76-3. 31719-76-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 4-(Phenoxymethyl)benzoic acid, and the molecular formula is C14H12O3, Quality Control of 31719-76-3.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Wieczorek, Achim’s team published research in Organic & Biomolecular Chemistry in 12 | CAS: 1466420-02-9

Organic & Biomolecular Chemistry published new progress about 1466420-02-9. 1466420-02-9 belongs to catalysis-chemistry, auxiliary class Copper-Free Click Chemistry,Tetrazine, name is (4-(6-Methyl-1,2,4,5-tetrazin-3-yl)phenyl)methanamine trifluoroacetic acid, and the molecular formula is C10H6Br2, Safety of (4-(6-Methyl-1,2,4,5-tetrazin-3-yl)phenyl)methanamine trifluoroacetic acid.

Wieczorek, Achim published the artcileRigid tetrazine fluorophore conjugates with fluorogenic properties in the inverse electron demand Diels-Alder reaction, Safety of (4-(6-Methyl-1,2,4,5-tetrazin-3-yl)phenyl)methanamine trifluoroacetic acid, the publication is Organic & Biomolecular Chemistry (2014), 12(24), 4177-4185, database is CAplus and MEDLINE.

1,2,4,5-Tetrazine fluorophore derivatives with structurally rigid mol. designs were synthesized using Sonogashira and Stille cross-coupling as well as copper-catalyzed azide-alkyne cycloaddition The synthesized bichromophoric systems exhibit low fluorescence quantum yields due to quenching by the tetrazine. The extent of fluorescence quenching observed for those systems depends on the distance between the fluorophore and the tetrazine. The decreased fluorescence is “turned on” by conversion of the tetrazine in the inverse electron demand Diels-Alder cycloaddition Time resolved spectroscopy indicated resonance energy transfer between BODIPY and the tetrazine as the underlying quenching mechanism. The synthesized conjugates were successfully applied in protein labeling experiments

Organic & Biomolecular Chemistry published new progress about 1466420-02-9. 1466420-02-9 belongs to catalysis-chemistry, auxiliary class Copper-Free Click Chemistry,Tetrazine, name is (4-(6-Methyl-1,2,4,5-tetrazin-3-yl)phenyl)methanamine trifluoroacetic acid, and the molecular formula is C10H6Br2, Safety of (4-(6-Methyl-1,2,4,5-tetrazin-3-yl)phenyl)methanamine trifluoroacetic acid.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Jia, Jingwen’s team published research in Journal of Materials Chemistry A: Materials for Energy and Sustainability in 10 | CAS: 118-90-1

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about 118-90-1. 118-90-1 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Natural product, name is 2-Methylbenzoic acid, and the molecular formula is C8H8O2, Synthetic Route of 118-90-1.

Jia, Jingwen published the artcileA cobalt covalent organic framework: a dual-functional atomic-level catalyst for visible-light-driven C-H annulation of amides with alkynes, Synthetic Route of 118-90-1, the publication is Journal of Materials Chemistry A: Materials for Energy and Sustainability (2022), 10(21), 11514-11523, database is CAplus.

Herein, a synthesis of a dual-functional cobalt covalent organic framework (CoCOF-SYNU-1) for visible-light-driven C-H annulation of amides with alkynes was reported. An at.-level cobalt center ensures the occurrence of powerful chelation with amides and subsequent precise C-H activation, while the photoactive covalent organic framework was responsible for absorbing visible light to accelerate the catalytic cycle. In the presence of CoCOF-SYNU-1, visible-light-driven regioselective [4 + 2] C-H annulation proceeded smoothly, delivering a wide range of isoquinolin-1(2H)-one derivatives I [R1 = n-Pr, n-Bu, Ph, etc.; R2 = H, n-Pr, trimethylsilyl, etc.; R3 = H, 6-Me, 8-I, etc.; Q = 8-quinolyl] with high efficiency. Significantly, due to the inherent heterogeneous nature and good stability of CoCOF-SYNU-1, the reaction exhibited excellent catalyst recyclability and practicability.

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about 118-90-1. 118-90-1 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Natural product, name is 2-Methylbenzoic acid, and the molecular formula is C8H8O2, Synthetic Route of 118-90-1.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Zhang, Qing-Wei’s team published research in Angewandte Chemie, International Edition in 55 | CAS: 1798-04-5

Angewandte Chemie, International Edition published new progress about 1798-04-5. 1798-04-5 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2-(4-(tert-Butyl)phenoxy)acetic acid, and the molecular formula is C12H16N2O2, COA of Formula: C12H16O3.

Zhang, Qing-Wei published the artcileFluorodecarboxylation for the synthesis of trifluoromethyl aryl ethers, COA of Formula: C12H16O3, the publication is Angewandte Chemie, International Edition (2016), 55(33), 9758-9762, database is CAplus and MEDLINE.

The synthesis of mono-, di-, and trifluoromethyl aryl ethers by fluorodecarboxylation of the corresponding carboxylic acids is reported. AgF2 induces decarboxylation of aryloxydifluoroacetic acids, and AgF, either generated in situ or added sep., serves as a source of fluorine to generate the fluorodecarboxylation products. The addition of 2,6-difluoropyridine increased the reactivity of AgF2, thereby increasing the range of functional groups and electronic properties of the aryl groups that are tolerated. The reaction conditions used for the formation of trifluoromethyl aryl ethers also served to form difluoromethyl and monofluoromethyl aryl ethers.

Angewandte Chemie, International Edition published new progress about 1798-04-5. 1798-04-5 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2-(4-(tert-Butyl)phenoxy)acetic acid, and the molecular formula is C12H16N2O2, COA of Formula: C12H16O3.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Padmanabhan, S.’s team published research in Biochemistry in 30 | CAS: 10517-44-9

Biochemistry published new progress about 10517-44-9. 10517-44-9 belongs to catalysis-chemistry, auxiliary class Salt,Amine,Aliphatic hydrocarbon chain, name is Propane-1,3-diamine dihydrochloride, and the molecular formula is C3H12Cl2N2, HPLC of Formula: 10517-44-9.

Padmanabhan, S. published the artcileRelative affinities of divalent polyamines and of their N-methylated analogs for helical DNA determined by sodium-23 NMR, HPLC of Formula: 10517-44-9, the publication is Biochemistry (1991), 30(30), 7550-9, database is CAplus and MEDLINE.

Interactions of divalent polyamines with double-helical DNA in aqueous solution are investigated by monitoring the decrease in 23Na NMR relaxation rates as NaDNA is titrated with H3N+-(CH2)m-+NH3, where m = 3, 4, 5, or 6. Analogous measurements are made for the same homologous series of methylated polyamines (methonium ions). The dependence of the 23Na relaxation rates on the amount of added divalent cation (M2+) is analyzed quant. in terms of a two-state model. The sodium ions are assumed to be in rapid exchange between a bound state, where they are close enough to DNA so that it affects their relaxation rate, and a free state in bulk solution, where their relaxation rate is the same as in solutions containing no DNA. The distribution of Na+ and M2+ between these states is described quant. in terms of an ion-exchange parameter: DMú·(pBM)(1 – pBNa)n/(pBNa)n(1 = pBM), where pBNa and pBM are the fractions of Na+ and M2+ that are close enough to DNA to be considered bound (by the NMR criterion), and n is the number of sodium ions displaced from DNA by the binding of one M2+ ion. For each of the polyamines and methonium ions investigated here, equations derived from this two-state model yield acceptable fittings of the titration curves if rNao, the number of sodium ions bound per DNA phosphate when no competing cations are present, is assigned a value between 0.6 and 1.00. Within this range, changing the value assigned to rNao does change the best-fitted values of DM determined for the polyamines (DH) and for the methonium ions (DMe) but does not alter the following conclusions about the trends in these parameters. (1) For polyamines and methonium ions of the same m, DH exceeds DMe by factors that are significantly larger for m = 3 and 4 than for m = 5 and 6. (2) DH For m = 3 and 4 is larger than DH for m = 5 and 6. (3) DMe For m = 3 and 4 is smaller than DMe for m = 5 and 6.

Biochemistry published new progress about 10517-44-9. 10517-44-9 belongs to catalysis-chemistry, auxiliary class Salt,Amine,Aliphatic hydrocarbon chain, name is Propane-1,3-diamine dihydrochloride, and the molecular formula is C3H12Cl2N2, HPLC of Formula: 10517-44-9.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Kwon, Hyejin’s team published research in Nano Research in 15 | CAS: 191-07-1

Nano Research published new progress about 191-07-1. 191-07-1 belongs to catalysis-chemistry, auxiliary class Electronic Materials, name is Coronene, and the molecular formula is C24H12, HPLC of Formula: 191-07-1.

Kwon, Hyejin published the artcileAll-hydrocarbon, all-conjugated cycloparaphenylene-polycyclic aromatic hydrocarbon host-guest complexes stabilized by CH-¦Ð interactions, HPLC of Formula: 191-07-1, the publication is Nano Research (2022), 15(6), 5545-5555, database is CAplus.

Polycyclic aromatic hydrocarbons (PAHs) are promising nanocarbon materials with diverse optoelectronic properties, yet they also pose concerning environmental and health risks. Despite the ubiquity of PAHs in the environment (crude oil, emissions, and biomass), most supermols. rely on heteroatoms for stability. We discovered and characterized a family of all-hydrocarbon, all-¦Ð-conjugated [n]cycloparaphenylene-PAH host-guest complexes. We built a theor. framework to rapidly select these complexes and predict their stabilities, driven exclusively by CH-¦Ð interactions. More than a dozen complexes were confirmed exptl. and assembled directly from com. available compounds This motif offers a versatile way to combine the advantageous properties of organic semiconductors with the rich dynamic, stereochem., stimulus-responsive, and stress-dissipative behavior of host-guest complexes, while creating new opportunities for bespoke PAH separation or remediation materials.

Nano Research published new progress about 191-07-1. 191-07-1 belongs to catalysis-chemistry, auxiliary class Electronic Materials, name is Coronene, and the molecular formula is C24H12, HPLC of Formula: 191-07-1.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia

Wei, Duo’s team published research in ChemCatChem in 11 | CAS: 140-28-3

ChemCatChem published new progress about 140-28-3. 140-28-3 belongs to catalysis-chemistry, auxiliary class Benzenes, name is N1,N2-Dibenzylethane-1,2-diamine, and the molecular formula is C12H12F3N5O2, Synthetic Route of 140-28-3.

Wei, Duo published the artcileManganese-Catalyzed Transfer Hydrogenation of Aldimines, Synthetic Route of 140-28-3, the publication is ChemCatChem (2019), 11(21), 5256-5259, database is CAplus.

The reduction of imines to amines R1CH2NHR2 [R1 = Ph, 2-pyridyl, CH=CHPh, etc.; R2 = Ph, cyclohexyl, Bn, etc.] via transfer hydrogenation was achieved by using a phosphine-free manganese(I) catalyst. Using isopropanol as reductant, in the presence of t-BuOK (4 mol %) and manganese complex [Mn(CO)3Br(¦Ê2N,N-PyCH2NH2)] (2 mol %), a large variety of aldimines (30 examples) were typically reduced in 3 h at 80 ¡ãC with good to excellent yield.

ChemCatChem published new progress about 140-28-3. 140-28-3 belongs to catalysis-chemistry, auxiliary class Benzenes, name is N1,N2-Dibenzylethane-1,2-diamine, and the molecular formula is C12H12F3N5O2, Synthetic Route of 140-28-3.

Referemce:
https://courses.lumenlearning.com/boundless-chemistry/chapter/catalysis/,
Catalysis – Wikipedia