Huang, Rui’s team published research in Journal of Applied Polymer Science in 139 | CAS: 13822-56-5

Journal of Applied Polymer Science published new progress about 13822-56-5. 13822-56-5 belongs to catalysis-chemistry, auxiliary class Organic Silicones, name is 3-(Trimethoxysilyl)propan-1-amine, and the molecular formula is C6H17NO3Si, Formula: C6H17NO3Si.

Huang, Rui published the artcileHighly stretchable polyurethane coating based on functionalized cerium oxide nanoparticles for anti-corrosive/UV protection, Formula: C6H17NO3Si, the publication is Journal of Applied Polymer Science (2022), 139(15), 51927, database is CAplus.

To prolong the active life of carbon steel in corrosive environment, it is an effective way to use inorganic nano-pigments in polyurethane (PU) coatings. In this work, the CeO2 nanoparticles are modified by APTMS (labeled as mCeNPs), and the organic-inorganic nanocomposite coating is prepared The morphol. and structure of PU/mCeNPs composites are characterized by field emission SEM, transmission electron microscopy, and Fourier transform IR spectroscopy. The mech. and UV resistance properties of compound material are studied by UV spectroscopy and universal tensile testing machine. The corrosion resistance of PU/mCeNPs coatings are investigated by Tafel polarization technique and electrochem. impedance spectroscopy. The results show that the PU composite coating with mCeNPs additive had high long-term corrosion resistance. Under the optimum conditions, when mCeNPs accounted for 5% of PU, the nanocomposite coatings show excellent UV resistance, excellent mech. properties, and long-term corrosion resistance due to the characteristics of ceria and its good dispersion in PU.

Journal of Applied Polymer Science published new progress about 13822-56-5. 13822-56-5 belongs to catalysis-chemistry, auxiliary class Organic Silicones, name is 3-(Trimethoxysilyl)propan-1-amine, and the molecular formula is C6H17NO3Si, Formula: C6H17NO3Si.

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

Wang, Lizhi’s team published research in Environmental Pollution (Oxford, United Kingdom) in 297 | CAS: 191-07-1

Environmental Pollution (Oxford, United Kingdom) 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 C10H10O6, Safety of Coronene.

Wang, Lizhi published the artcileOn-site measured emission factors of polycyclic aromatic hydrocarbons for different types of marine vessels, Safety of Coronene, the publication is Environmental Pollution (Oxford, United Kingdom) (2022), 118782, database is CAplus and MEDLINE.

A portable emission sampling system was used to perform on-site measurements of the emission factors (EFs; quantities of pollutants emitted per unit of energy consumed) of 29 polycyclic aromatic hydrocarbons (PAHs) for five types of marine vessels using light diesel in Hainan Province, China. Both gaseous- and particulate-phase PAHs from vessel emissions were sampled and measured using gas chromatog. coupled with mass spectrometry (GC-MS), and the PAH EFs were calculated based on the carbon mass balance method. The average EFs of gaseous- and particulate-phase PAHs were 6.2 ¡À 7.8 and 17 ¡À 26 mg/kg, with naphthalene (NAP) and phenanthrene (PHE) dominating the gaseous- and particulate-phase PAH emissions, resp. Among the five types of vessels, the EFs for small fishing boats were significantly higher than those for other types of vessels, and the lowest EFs were found for tug boats. Composition profiles and typical isomer ratios of PAHs were calculated for five types of vessels. Particulate-phase PAHs accounted for 63 ¡À 16% of the total emissions of 29 PAH species, and the particulate/gaseous-phase partitioning of PAHs was dominated by organic carbon (OC) absorption rather than black carbon (BC) adsorption. Emission factors of PAHs under different activity conditions were measured and calculated, and relatively higher EFs were found in the maneuvering mode for medium fishing boats and in the operating mode for engineering vessels. No significant differences were found among the PAH composition profiles under different activity conditions.

Environmental Pollution (Oxford, United Kingdom) 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 C10H10O6, Safety of Coronene.

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

Zhao, Liqiang’s team published research in Tianranqi Gongye in 32 | CAS: 2016-56-0

Tianranqi Gongye published new progress about 2016-56-0. 2016-56-0 belongs to catalysis-chemistry, auxiliary class Active Esterification, name is Dodecylamineacetate, and the molecular formula is C10H15NO, COA of Formula: C14H31NO2.

Zhao, Liqiang published the artcileUse of organic ester as a high-performance spacer for the acidic preflush and hydraulic fracturing system, COA of Formula: C14H31NO2, the publication is Tianranqi Gongye (2012), 32(6), 43-45, database is CAplus.

The acidic preflush and hydraulic fracturing treatment has been widely applied to the stimulation of reservoirs at oil and gas fields. Although satisfactory stimulation effects have been obtained, the problem of gel breaking arises before the interactive touch between the prepad fluid and the fracturing fluid in the process of injection. In view of this, for the purpose of smooth operation and successful EOR treatment, the spacer is adopted to isolate the prepad fluid from the fracturing fluid. Through theor. anal. and exptl. research, the organic ester is used as the main agent to improve the performance of the prepad fluid and spacer for the developed acidic preflush and hydraulic fracturing system, and their formula and preparation methods are also presented herein. After a series of exptl. evaluation and anal., this developed acidic preflush and hydraulic fracturing system can not only meet the need of the technol., but effectively isolate the prepad fluid from the fracturing fluid, which helps improve the performance of the fracturing treatment.

Tianranqi Gongye published new progress about 2016-56-0. 2016-56-0 belongs to catalysis-chemistry, auxiliary class Active Esterification, name is Dodecylamineacetate, and the molecular formula is C10H15NO, COA of Formula: C14H31NO2.

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

Zhang, Yun’s team published research in Tetrahedron Letters in 58 | CAS: 1772-76-5

Tetrahedron Letters published new progress about 1772-76-5. 1772-76-5 belongs to catalysis-chemistry, auxiliary class Benzenes, name is (E)-3-(3-Nitrophenyl)acrylic acid, and the molecular formula is C11H16BNO3, Computed Properties of 1772-76-5.

Zhang, Yun published the artcileCopper-catalyzed decarboxylative trifluoroethylation of cinnamic acids, Computed Properties of 1772-76-5, the publication is Tetrahedron Letters (2017), 58(9), 880-883, database is CAplus.

An efficient Cu-catalyzed stereoselective trifluoroethylation through the decarboxylative cross-coupling of cinnamic acid derivatives with CF3CH2I is described. The ready availability of the starting materials, the high level of functional group tolerance, and excellent E selectivity make this protocol a safe and operationally convenient strategy for the efficient synthesis of trifluoroethyl derivatives

Tetrahedron Letters published new progress about 1772-76-5. 1772-76-5 belongs to catalysis-chemistry, auxiliary class Benzenes, name is (E)-3-(3-Nitrophenyl)acrylic acid, and the molecular formula is C11H16BNO3, Computed Properties of 1772-76-5.

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

Yang, Wen’s team published research in Chemical Communications (Cambridge, United Kingdom) in 47 | CAS: 4230-93-7

Chemical Communications (Cambridge, United Kingdom) published new progress about 4230-93-7. 4230-93-7 belongs to catalysis-chemistry, auxiliary class Alkenyl,Nitro Compound,Benzene,Ether, name is 1,2-Dimethoxy-4-(2-nitrovinyl)benzene, and the molecular formula is C3H6BrNaO3S, Safety of 1,2-Dimethoxy-4-(2-nitrovinyl)benzene.

Yang, Wen published the artcileChiral squaramide-catalyzed highly diastereo- and enantioselective direct Michael addition of nitroalkanes to nitroalkenes, Safety of 1,2-Dimethoxy-4-(2-nitrovinyl)benzene, the publication is Chemical Communications (Cambridge, United Kingdom) (2011), 47(47), 12706-12708, database is CAplus and MEDLINE.

An efficient highly diastereo- and enantioselective direct Michael addition of nitroalkanes to nitroalkenes catalyzed by chiral squaramide catalyst has been developed. This organocatalytic reaction with a low catalyst loading (2 mol%) proceeded well to afford synthetically useful 1,3-dinitro compounds in high yields with high diastereoselectivities (up to 95:5 dr) and excellent enantioselectivities (up to 97% ee).

Chemical Communications (Cambridge, United Kingdom) published new progress about 4230-93-7. 4230-93-7 belongs to catalysis-chemistry, auxiliary class Alkenyl,Nitro Compound,Benzene,Ether, name is 1,2-Dimethoxy-4-(2-nitrovinyl)benzene, and the molecular formula is C3H6BrNaO3S, Safety of 1,2-Dimethoxy-4-(2-nitrovinyl)benzene.

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

Yang, Wen’s team published research in Advanced Synthesis & Catalysis in 353 | CAS: 4230-93-7

Advanced Synthesis & Catalysis published new progress about 4230-93-7. 4230-93-7 belongs to catalysis-chemistry, auxiliary class Alkenyl,Nitro Compound,Benzene,Ether, name is 1,2-Dimethoxy-4-(2-nitrovinyl)benzene, and the molecular formula is C18H17NO8, Product Details of C10H11NO4.

Yang, Wen published the artcileChiral Squaramide-Catalyzed Highly Enantioselective Michael Addition of 2-Hydroxy-1,4-naphthoquinones to Nitroalkenes, Product Details of C10H11NO4, the publication is Advanced Synthesis & Catalysis (2011), 353(8), 1241-1246, database is CAplus.

A chiral squaramide-organocatalyzed, highly enantioselective Michael addition of 2-hydroxy-1,4-naphthoquinones to nitroalkenes has been developed. This reaction afforded the chiral naphthoquinones in excellent yields (up to 99%) and excellent enantioselectivity (up to 98% ee) under very low catalyst loading (0.25 mol%). This organocatalytic asym. Michael addition provides an efficient alternative route toward the synthesis of chiral functionalized naphthoquinones.

Advanced Synthesis & Catalysis published new progress about 4230-93-7. 4230-93-7 belongs to catalysis-chemistry, auxiliary class Alkenyl,Nitro Compound,Benzene,Ether, name is 1,2-Dimethoxy-4-(2-nitrovinyl)benzene, and the molecular formula is C18H17NO8, Product Details of C10H11NO4.

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

Liang, Jingwen’s team published research in Inorganic Chemistry Communications in 40 | CAS: 1772-76-5

Inorganic Chemistry Communications published new progress about 1772-76-5. 1772-76-5 belongs to catalysis-chemistry, auxiliary class Benzenes, name is (E)-3-(3-Nitrophenyl)acrylic acid, and the molecular formula is C9H7NO4, Formula: C9H7NO4.

Liang, Jingwen published the artcileA series of organotin(IV) complexes based on (E)-3-(3-nitrophenyl) acrylic acid: Syntheses, crystal structures and biological activities, Formula: C9H7NO4, the publication is Inorganic Chemistry Communications (2014), 133-137, database is CAplus.

A series of organotin carboxylates based on (E)-3-(3-nitrophenyl) acrylic acid (HL), namely {[Ph3SnL]¡¤0.5C6H6}n (1), [(Ph3Sn)2O(L)(Ph3Sn)(L)]n (2) and [Bu2LSnOSnLBu2]2 (3), have been synthesized. All the complexes have been characterized by elemental anal., IR, 1H NMR spectroscopy and x-ray diffraction analyses. The structural analyses show that complexes 12 adopt 1D polymeric chain structures generated by the bridging carboxylate ligands and the five-coordinated tin centers. The structure of complex 3 is centro-sym. and features a central rhombus Sn2O2 unit with two addnl. tin atoms linked at the O atoms. In addition, the antitumor activity of complex 3 has been studied.

Inorganic Chemistry Communications published new progress about 1772-76-5. 1772-76-5 belongs to catalysis-chemistry, auxiliary class Benzenes, name is (E)-3-(3-Nitrophenyl)acrylic acid, and the molecular formula is C9H7NO4, Formula: C9H7NO4.

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

Dreyer, R.’s team published research in Journal of Radioanalytical and Nuclear Chemistry in 96 | CAS: 6972-05-0

Journal of Radioanalytical and Nuclear Chemistry published new progress about 6972-05-0. 6972-05-0 belongs to catalysis-chemistry, auxiliary class Thiourea,Amine,Aliphatic hydrocarbon chain,Amide, name is 1,1-Dimethylthiourea, and the molecular formula is C3H8N2S, Synthetic Route of 6972-05-0.

Dreyer, R. published the artcileSynthesis and characterization of cationic astatine compounds with sulfur-containing ligands stable in aqueous solutions, Synthetic Route of 6972-05-0, the publication is Journal of Radioanalytical and Nuclear Chemistry (1985), 96(3), 333-41, database is CAplus.

The formation of cationic At compounds with thiourea, thiourea derivatives and some N-acylthioureas was studied in aqueous solutions The ion mobilities in free electrolytes were determined for the detection of carrier-free At compounds and their characterization. Information about the stability of this group of compounds could be given after studies in the presence of halide and pseudohalide ions (Cl, Br, I, SCN).

Journal of Radioanalytical and Nuclear Chemistry published new progress about 6972-05-0. 6972-05-0 belongs to catalysis-chemistry, auxiliary class Thiourea,Amine,Aliphatic hydrocarbon chain,Amide, name is 1,1-Dimethylthiourea, and the molecular formula is C3H8N2S, Synthetic Route of 6972-05-0.

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

Ekner, Holly’s team published research in Food Control in 132 | CAS: 191-07-1

Food Control 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, Synthetic Route of 191-07-1.

Ekner, Holly published the artcileDetermination of polycyclic aromatic hydrocarbons in commercial olive oils by HPLC/GC/MS – Occurrence, composition and sources, Synthetic Route of 191-07-1, the publication is Food Control (2022), 108528, database is CAplus.

Polycyclic aromatic hydrocarbons (PAHs) are a large class of organic compounds produced from incomplete combustion. Many PAHs are mutagenic and some are carcinogenic and pose a health risk to humans. Dietary intake of PAHs is a major route of exposure, where fats and edible oils are important contributors to overall dietary PAH exposure. Composed of hundreds of individual compounds as a complex mixture, only 16 PAHs are typically monitored in food and the environment. In this present study we analyzed 16 com. olive oil samples from different countries of origin and type (virgin or refined oil) for their content of 45 PAHs using a high-performance liquid chromatograph coupled to a gas chromatograph with a mass spectrometric detector. The content of the 45 PAHs varied between 9.17 and 94.7¦Ìg/kg (median: 30.1¦Ìg/kg) in the different olive oil samples. Only one sample didn’t meet the regulatory threshold levels for PAHs. The compositional profile of PAHs across the olive oil samples showed a high abundance of PAHs of lower mol. weights, and a large contribution of alkylated PAHs regardless of olive oil type. Direct contact with diesel exhaust emissions from mech. harvesters has previously shown to affect PAH levels in olive oils. Using diagnostic PAH ratios, biomass/coal combustion and/or petroleum/fossil fuel combustion were indicated as important sources. Source apportionment by Pos. Matrix Factorization revealed diesel exhaust emission and biomass combustion as the two major sources of PAHs followed by traffic emissions. This suggests that air quality may have a considerable impact on pollution levels in olive oils and thus indirectly affect dietary exposure.

Food Control 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, Synthetic Route of 191-07-1.

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

Netzeva, Tatiana’s team published research in Pharmaceutical Research in 17 | CAS: 3115-28-4

Pharmaceutical Research published new progress about 3115-28-4. 3115-28-4 belongs to catalysis-chemistry, auxiliary class Aliphatic Chain, name is 2-Butylhexanoic acid, and the molecular formula is C10H20O2, Synthetic Route of 3115-28-4.

Netzeva, Tatiana published the artcile2D and 3D QSAR analysis of some valproic acid metabolites and analogues as anticonvulsant agents, Synthetic Route of 3115-28-4, the publication is Pharmaceutical Research (2000), 17(6), 727-732, database is CAplus and MEDLINE.

Purpose: To investigate the structural features responsible for the variations in anticonvulsant activity of a series of twenty six valproic acid (VPA) metabolites and analogs. Methods: Different approaches for quant. structure-activity relationship anal. (QSAR) as conventional 2D QSAR anal. and comparative mol. field anal. (3D QSAR) were used. The 2D QSAR was performed with more than twenty structure descriptors as the partition and distribution coefficients, topol., geometrical and electronic descriptors, and indicator variables. The electronic descriptors were calculated for the energetically most stable conformers. For the need of 3D QSAR steric and electrostatic potential maps were generated. Partial least squares (PLS) anal. has been carried out for the statistical evaluation of the models and weighted least squares (WLS) anal. was used for the visualization of the results. Results: It was established that the two approaches-2D and 3D QSAR, prove the importance of the lipophilicity of the compounds for anticonvulsant activity. The results from both the approaches suggest that a substitution at ¦Á-position is essential for a higher activity. Conclusions: 3D QSAR is useful for describing the steric and electrostatic fields, important for the activity. For predicting the activity of new compounds 2D QSAR tools were proposed.

Pharmaceutical Research published new progress about 3115-28-4. 3115-28-4 belongs to catalysis-chemistry, auxiliary class Aliphatic Chain, name is 2-Butylhexanoic acid, and the molecular formula is C10H20O2, Synthetic Route of 3115-28-4.

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