Kay, John E.’s team published research in FEBS Letters in 121 | CAS: 10517-44-9

FEBS Letters 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, SDS of cas: 10517-44-9.

Kay, John E. published the artcileDirect effects of 1,3-diaminopropane on reticulocyte lysate protein synthesis, SDS of cas: 10517-44-9, the publication is FEBS Letters (1980), 121(2), 309-12, database is CAplus and MEDLINE.

1,3-Diaminopropane-2HCl (I) [10517-44-9] inhibited protein synthesis by reticulocyte lysates in the presence of 2 mM Mg2+. This was apparently a simple cation effect, since I itself supported protein synthesis by the system in the absence of normal divalent cations. The inhibitory action of I was not due to an antagonistic effect toward spermidine, a natural polyamine associated with protein synthesis, because the inhibition was not diminished when the lyzate was supplemented with large amounts of spermidine-HCl [334-50-9]. Direct inhibition of protein synthesis by I would include, among other effects, a reduction in the concentration of enzymes required for polyamine synthesis. This raises questions as to the specificity of I as an inhibitor of polyamine formation.

FEBS Letters 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, SDS of cas: 10517-44-9.

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

Klingebiel, Uwe’s team published research in Journal of Organometallic Chemistry in 144 | CAS: 312-40-3

Journal of Organometallic Chemistry 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, SDS of cas: 312-40-3.

Klingebiel, Uwe published the artcileCycloaddition reactions of aminofluorosilanes, SDS of cas: 312-40-3, the publication is Journal of Organometallic Chemistry (1978), 144(3), 381-8, database is CAplus.

[2+2] Cycloaddition reaction of RR1FSiNHR2 with BuLi gave 70-80% I (R = Me, Ph; R1 = Me, MeEtCH, Ph; R2 = Me2CH, Me3C, 2,4,6-Me3C6H2) (5 compounds). RR1FSiNHR2 were prepared in 70-90% yields by treating RR1SiF2 with LiNHR2.

Journal of Organometallic Chemistry 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, SDS of cas: 312-40-3.

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

Guan, Renpeng’s team published research in Green Chemistry in 24 | CAS: 104-03-0

Green Chemistry published new progress about 104-03-0. 104-03-0 belongs to catalysis-chemistry, auxiliary class Nitro Compound,Carboxylic acid,Benzene, name is 4-Nitrophenylacetic acid, and the molecular formula is C8H7NO4, Related Products of catalysis-chemistry.

Guan, Renpeng published the artcileDecarboxylative oxygenation of carboxylic acids with O2via a non-heme manganese catalyst, Related Products of catalysis-chemistry, the publication is Green Chemistry (2022), 24(7), 2946-2952, database is CAplus.

Decarboxylative oxygenation of carboxylic acids using a non-heme manganese catalyst under blue light irradiation with O2 as the sole oxidant. Featuring mild reaction conditions, the protocol allowed readily available carboxylic acids to be converted into a wide variety of valuable aldehydes, ketones and amides. Mechanistic studies indicated that the decarboxylation and oxygenation involved the formation of active Mn-oxygen species.

Green Chemistry published new progress about 104-03-0. 104-03-0 belongs to catalysis-chemistry, auxiliary class Nitro Compound,Carboxylic acid,Benzene, name is 4-Nitrophenylacetic acid, and the molecular formula is C8H7NO4, Related Products of catalysis-chemistry.

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

Neggad, Abdelhamid’s team published research in Journal of Separation Science in 44 | CAS: 16909-09-4

Journal of Separation Science published new progress about 16909-09-4. 16909-09-4 belongs to catalysis-chemistry, auxiliary class Alkenyl,Carboxylic acid,Benzene,Ether, name is (E)-3-(2,4-Dimethoxyphenyl)acrylic acid, and the molecular formula is C11H12O4, Safety of (E)-3-(2,4-Dimethoxyphenyl)acrylic acid.

Neggad, Abdelhamid published the artcileA new method of extracting polyphenols from honey using a biosorbent compared to the commercial resin amberlite XAD2, Safety of (E)-3-(2,4-Dimethoxyphenyl)acrylic acid, the publication is Journal of Separation Science (2021), 44(10), 2089-2096, database is CAplus and MEDLINE.

A new extraction method of polyphenols from honey using a biodegradable resin was developed and compared with the common com. resin amberlite XAD2. For this purpose, three honey samples of Algerian origin were selected for the different physicochem. and biochem. parameters study. After extraction of the target compounds by both resins, the polyphenol content was determined, the antioxidant activity was tested, and liquid chromatog.-mass spectrometry analyses were performed for identification and quantification. The results showed that physicochem. and biochem. parameters meet the norms of the International Honey Commission, and the H1 sample seemed to be of high quality. The optimal conditions of extraction by biodegradable resin were a pH of 3, an adsorption dose of 40 g/L, a contact time of 50 min, an extraction temperature of 60°C, and no stirring. The regeneration and reuse number of both resins was three cycles. The polyphenol contents demonstrated a higher extraction efficiency of biosorbent than of XAD2, especially in H1. Liquid chromatog.-mass spectrometry analyses allowed for the identification and quantification of 15 compounds in the different honey samples extracted using both resins and the most abundant compound was 3,4,5-trimethoxybenzoic acid. In addition, the biosorbent extracts showed stronger antioxidant activities than the XAD2 extracts

Journal of Separation Science published new progress about 16909-09-4. 16909-09-4 belongs to catalysis-chemistry, auxiliary class Alkenyl,Carboxylic acid,Benzene,Ether, name is (E)-3-(2,4-Dimethoxyphenyl)acrylic acid, and the molecular formula is C11H12O4, Safety of (E)-3-(2,4-Dimethoxyphenyl)acrylic acid.

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

shirali, Somayeh’s team published research in Journal of Porous Materials in 27 | CAS: 5411-14-3

Journal of Porous Materials published new progress about 5411-14-3. 5411-14-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2,2-(1,2-Phenylenebis(oxy))diacetic acid, and the molecular formula is C10H10O3, HPLC of Formula: 5411-14-3.

shirali, Somayeh published the artcilePreparation and characterization of novel hybrid nanomaterial catalyst MCM-41@AzaCrown-SB-Cu and its application in synthesis of 1, 2, 3-triazole derivatives in click chemistry, HPLC of Formula: 5411-14-3, the publication is Journal of Porous Materials (2020), 27(6), 1601-1611, database is CAplus.

Synthesis of efficient and reusable catalyst was carried out by immobilization of azacrown ether onto the covalently linked amine-functionalized mesoporous MCM-41 via a simple method. Application of this linked azacrown ether functionalized MCM-41 catalyst was also investigated as an effective, heterogeneous and host material in the regioselective ring opening and triazole cyclization of epoxides by phenylacetylene and sodium azide in click reaction. The heterogeneous catalyst was characterized by TGA,XRD,TEM, 1HNMR, 13CNMR and FT-IR techniques. The results of theses anal. showed that, MCM-41@azacrown-Cu with a 22.99% mol loading of copper has given excellent catalytic activity and high efficiency in short time. It is noted that one of the most valuable factors in this work is the recyclability of the catalyst.

Journal of Porous Materials published new progress about 5411-14-3. 5411-14-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2,2-(1,2-Phenylenebis(oxy))diacetic acid, and the molecular formula is C10H10O3, HPLC of Formula: 5411-14-3.

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

Shirali, Somayeh’s team published research in Silicon in 13 | CAS: 5411-14-3

Silicon published new progress about 5411-14-3. 5411-14-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2,2-(1,2-Phenylenebis(oxy))diacetic acid, and the molecular formula is C10H12F6N4O6PdS2, Safety of 2,2-(1,2-Phenylenebis(oxy))diacetic acid.

Shirali, Somayeh published the artcilePreparation and Characterization of Novel Hybrid Nanomaterial Catalyst MCM-41@AzaCrown-SB-cu and its Application in Synthesis of Hexahydroquinoline Derivatives under Solvent-Free Conditions, Safety of 2,2-(1,2-Phenylenebis(oxy))diacetic acid, the publication is Silicon (2021), 13(8), 2479-2491, database is CAplus.

Synthesis of efficient and reusable catalyst was carried out by immobilizing azacrown ether onto the covalently linked amine-functionalized mesoporous MCM-41 via a simple method. Application of this linked azacrown ether functionalized MCM-41 catalyst was also investigated as an effective, heterogeneous in the synthesis of hexahydroquinoline derivatives I (R = H, 4-Me, 4-Cl, etc.) under solvent-free conditions at environment temperature The heterogeneous catalyst is characterized by TGA, XRD, TEM, 1HNMR, 13CNMR, and FT-IR techniques. The results of theses anal. showed that, MCM-41@azacrown-SB-Cu catalyst with a 22.99% mol loading of copper has given excellent catalytic activity and high efficiency in a short time. It is noted that one of the most valuable factors in this work is the recyclability of the catalyst.

Silicon published new progress about 5411-14-3. 5411-14-3 belongs to catalysis-chemistry, auxiliary class Carboxylic acid,Benzene,Ether, name is 2,2-(1,2-Phenylenebis(oxy))diacetic acid, and the molecular formula is C10H12F6N4O6PdS2, Safety of 2,2-(1,2-Phenylenebis(oxy))diacetic acid.

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

Tymann, Dina Christina’s team published research in Chemistry – A European Journal in 26 | CAS: 19117-31-8

Chemistry – A European Journal 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 C15H14O3, Product Details of C10H15NS.

Tymann, Dina Christina published the artcilePhotochemical Approach to the Cyclohepta[b]indole Scaffold by Annulative Two-Carbon Ring-Expansion, Product Details of C10H15NS, the publication is Chemistry – A European Journal (2020), 26(52), 11974-11978, database is CAplus and MEDLINE.

The implementation of the concept of a photochem. elicited two-carbon homologation of a π-donor-π-acceptor substituted chromophore by triple-bond insertion was reported. Implementing a Ph connector between the slide-in module and the chromophore enabled the synthesis of cyclohepta[b]indole-type building blocks by a metal-free annulative one-pot two-carbon ring expansion of the five-membered chromophore. Post-irradiative structural elaboration provided founding members of the indolo[2,3-d]tropone family of compounds Control experiments in combination with computational chem. on this multibond reorganization process founded the basis for a mechanistic hypothesis.

Chemistry – A European Journal 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 C15H14O3, Product Details of C10H15NS.

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

Schmid, H.’s team published research in Helvetica Chimica Acta in 36 | CAS: 3115-28-4

Helvetica Chimica Acta 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, Computed Properties of 3115-28-4.

Schmid, H. published the artcileThe constitution of fulvoplumierin. II, Computed Properties of 3115-28-4, the publication is Helvetica Chimica Acta (1953), 1468-89, database is CAplus.

cf. C.A. 48, 1365a. Fulvoplumierin (I), hydrogenated in AcOEt over 5% Pd-CaCO3 poisoned with Pb, absorbed 2.0 mol H to form 46% tetrahydrofulvoplumierin (II), C14H16O4, yellow needles (from EtOH), m. 75-6° (reduces Tollens reagent, and gives a yellow color with EtONa in Me2CO), and a little hexahydrofulvoplumierin (III). II in AcOEt was hydrogenated over Pd-CaCO3 to 64% III. Ozonization of II in CHCl3 gave BuCO2H (p-toluidide, m. 69-71°, mixed m.p. 70-2°), also obtained by oxidation of II with KMnO4. I, hydrogenated in AcOEt over Pd-CaCO3, absorbed 2.9 mol H to give a mixture, separated by distillation and chromatog. into 1.5% II; 36% III, C14H18O4, colorless needles (from MeOH-H2O), m. 43.0-3.2°, b0.02 120-30°, has 1 MeO group, no active H, slowly reduces Tollens reagent; 3.5% isohexahydrofulvoplumierin (IV), C14H18O4, m. 74-4.5° (from MeOH-H2O) (m.p. depressed by II), b0.02 120°, has 1 MeO group, slowly reduces Tollens reagents; 8% octahydrofulvoplumierin (V), C14H20O4, b0.01 at 130°; and an oil, which was saponified to a monocarboxylic acid (VI), C13H18O4, m. 91-2.5° (from C6H6-petr. ether), equivalent weight 246, λmaximum 243 mμ (log ε 3.88) (in EtOH). III in AcOH, hydrogenated over PtO2, absorbed 2.8 mol H and gave 15% decahydrofulvoplumierin (VII), C14H22O4, m. 41.5-3.0°, and 68% of an acid (VIII), C14H24O4. III did not react with MeNH2.HCl in EtOH, or with Ac2O, AcOH, and AcONH4, or with CH2N2 in Et2O. III, treated 20 h. with N NaOH at 125°, consumed 3 equivalents NaOH; acidification gave HCO2H, identified as HCONHPh (m. and mixed m.p. 45.5-6.5°), and 88% of a dibasic acid (IX), C12H18O4, m. 159-60° (from Et2O or Me2CO-H2O), equivalent weight 115, pK1 4.25, pK2 7.00, having 1 C-Me (Kuhn-Roth oxidation), no MeO. Ozonolysis of III in EtCl at -14° gave HCO2H (identified as HCONHPh), (CO2H)2, and 2-butylglutaric acid (X), C9H16O4, m. 89-40.5°, mixed m.p. 39.5-41°, equivalent weight 99, pK1 4.16, pK2 5.24. X, m. 40-1° (from Et2O-C5H12), was prepared in good yield by acid hydrolysis of BuC(CO2Et)2CHCH2CO2Et, b0.23 128°, obtained in 72% yield by condensation of BuCH(CO2Et)2 and BrCH2CH2CO2Et with Na in EtOH. IX was unaffected when heated 1 h. with 5% HCl at 180°. IX, hydrogenated over PtO2 in AcOH, absorbed 1.0 mol H and gave an oily dibasic acid (XI), C12H20O4, b0.01 150°, equivalent weight 119, pK1 4.56, pK2 5.90. IX, heated 30 min. with Ac2O at 155-60°, yielded a colorless add anhydride (XII), C14H18O4, m. 70.5-1°, pK 2.52, equivalent weight 255, giving an intensive violet color with FeCl3 and a pos. CHI3 test, and forming stable salts which give back XII on acidification. Ozonolysis of IX in AcOEt at -14° gave 1.83 mol CO2 and AcCH2CH2CHBuCO2H (XIII), C10H18O2, equivalent weight 195, having 2 C-Me group, and giving a pos. CHI3 test; Clemmensen reduction of XIII gave Bu2CHCO2H (XIV), b13, 150-70°, 2,4,6-tribromoanilide, m. and mixed m.p. 203.5-4.5° β-naphthylamide, m. and mixed m. 136-7.5°. For comparison with XIV, BuCHEt(CH2)2CO2H (piperazine salt, m. 110°); [2,4,6-tribromoanilide, m. 96.5-7.0° (from EtOH)], was prepared by reduction of BuCHEtCO2H with LiAlH4 to BuCHEtCH2OH, b12 79°, conversion to the bromide, condensation to BuCHEtCH2CH(CO2H)2, m. 99.0-9.5°, and decarboxylation. The UV spectrum of IX showed it to be an α,β-unsaturated acid, and the formation of XII, X, and XIII established IX as being 3-butyl-2-carboxy-1-cyclopentene-1-acetic acid. 2-carboxy-1-cyclopentene-1-acetic acid (XV), C8H10O4, m. 187°, equivalent weight 86, pK1 4.19, pK2 6.60, has an UV spectrum similar to that of IX, and was converted by boiling Ac2O to an acid anhydride similar to XII, 3-hydroxy-4-acetyl-6,7-dihydrocyclopenta[c]pyran-1(5H)-one (XVI), C10H10H4, m. 170-1°, colorless needles (from Me2CO-H2O), equivalent weight 203, pK 2.30, giving an intense violet color with FeCl3. XII and XVI also have similar UV spectra in acids and in bases and show similar titration curves with NaOH, as do IX and XV. XII is therefore 3-hydroxy-4-acetyl-7-butyl-6,7-dihydrocyclopenta[c]pyran-1-(5H)-one, III is Me 7-butyl-6,7-dihydrocyclopenta[c]pyran-1(5H)-one-4-carboxylate, and XI is 3-butyl-2-carboxycyclopentane-1-acetic acid. IV, hydrogenated over PtO2 in AcOH, absorbed 2.5 mol H and gave a mixture of VII and VIII. Ozonolysis of IV in CHCl3 at -20° gave BuCO(CH2)2CO2H (XVII), identified as its p-nitrophenylhydrazone, m. and mixed m. 149-50° (from EtOH-H2O). XVII, m. 52-3° (from Et2O-C5H12 or EtOH-H2O), was prepared by saponification of its Et ester, b13 114°, obtained in 55% yield from EtO2CCH2CH2COCl and Bu2Cd in C6H6. From its UV spectrum (λmaximum 285 mμ), IV has both double bonds conjugated with the carboxy group, and is therefore Me 7-butyl-5,6-dihydrocyclopenta[c]pyran-1(3H)-one-4-carboxylate. V, hydrogenated in AcOH over PtO2, absorbed 1.0 mol H, and gave VII. Saponification of V yielded a small amount of a hydroxy dicarboxylic acid (XVIII), C13H20O5, m. 132.5-3.0° (from Et2O-petr. ether or Me2CO-H2O), equivalent weight 133, pK1, 5.30, pK2 6.52, λmaximum 232 mμ (log ε 4.02) (in EtOH), which does not lactonize easily. XVIII is probably 2-(2-carboxy-3-butyl-2cyclopenten-1-yl)-3-hydroxypropionic acid, and V is either Me 7-butyl-3,4,6,7-tetrahydrocyclopenta[c]pyran-1(5H)-one-4-carboxylate or Me 7 -butyl-4,4a,5,6-tetrahydrocyclopenta[c]pyran-1(3H)-one-4-carboxylate or a mixture of both forms. By analogy, and from its UV spectrum, VI is 7-butyl-3,4,6,7-tetrahydrocyclopenta[c] pyran-1(5H)-one-4-carboxylic acid or 7-butyl-5,6,7,7a-tetrahydrocyclopenta[c]pyran-1(3H)-one-4-carboxylic acid. I, hydrogenated completely in AcOH over PtO2, gave VII and a mixture of other products which was saponified and then oxidized; KMnO4 gave (CO2H)2, XVII, and a lactonic acid (XIX), C13H20O4, m. 87.5-8.5°, equivalent weight 247; H2CrO4 gave BuCO2H, PrCO2H, and (CH2CO2H)2. VII is Me 7-butylhexahydrocyclopenta[c]pyran-1(3H)-one-4-carboxylate, XIX is the corresponding free acid, and VIII is 2-(2-carboxy-3-butylcyclopentyl)propionic acid. The UV spectrum of II shows a double bond, conjugated with those in the pyrone ring, which must be in the cyclopentane ring, since oxidation of II gave BuCO2H; II is probably Me 7-butylcyclopenta[c]pyran-1(5H)-one-4-carboxylate. From the structures of its derivatives, the similarity of its UV spectrum to those of 1-cinnamylideneindene and 1-crotonylideneindene (orange oil, C13H12, b0.05 90°; picrate, orange needles, m. 90-90.5°) and the lack of allene group absorption bands in its IR spectrum, I must be a fulvene derivative, Me 7-crotonylidenecyclopenta[c]pyran-1(7H)-one-4-carboxylate.

Helvetica Chimica Acta 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, Computed Properties of 3115-28-4.

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

Beketov, V. I.’s team published research in Journal of Applied Spectroscopy in 89 | CAS: 191-07-1

Journal of Applied Spectroscopy 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, Recommanded Product: Coronene.

Beketov, V. I. published the artcileEffect of Temperature on Parameters of Fluorescence Spectra of Solvatochromic Indicator Solutions in Stationary Phases for Gas-Liquid Chromatography, Recommanded Product: Coronene, the publication is Journal of Applied Spectroscopy (2022), 89(3), 433-438, database is CAplus.

Luminescence spectra of several polarity indicators, including Coumarin 153 and coronene that were previously studied at room temperature and Nile Red and Pigment Red 179, were recorded at 20 and 120°C in solutions of liquid stationary phases of various polarities. The effect of temperature on the spectral parameters sensitive to the stationary phase polarity was estimated for these indicators. The prospects for estimating the polarity of stationary liquid phases using luminescent methods at high temperatures was demonstrated.

Journal of Applied Spectroscopy 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, Recommanded Product: Coronene.

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

El Hajjaji, Fadoua’s team published research in Portugaliae Electrochimica Acta in 37 | CAS: 140-28-3

Portugaliae Electrochimica Acta 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 C16H20N2, Recommanded Product: N1,N2-Dibenzylethane-1,2-diamine.

El Hajjaji, Fadoua published the artcileElectrochemical, quantum calculations and Monte Carlo simulation studies of N1,N2-bis(1-phenylethylidene)ethane-1,2-diamine as a corrosion inhibitor for carbon steel in a 1.0 M hydrochloric acid solution, Recommanded Product: N1,N2-Dibenzylethane-1,2-diamine, the publication is Portugaliae Electrochimica Acta (2019), 37(1), 23-42, database is CAplus.

N1,N2-Bis(1-Phenylethylidene)ethane-1,2-diamine (PEED) was tested as a corrosion inhibitor for C-steel in a 1.0 M HCl solution, by using potentiodynamic polarization and electrochem. impedance spectroscopy (EIS) techniques. The results showed that PEED is a very good inhibitor, as its inhibition efficiency reached 93.8%, with a concentration of 1.0 × 10-3 M, at 298 K. Tafel polarization study revealed that PEED acted as a mixed type inhibitor that obeyed Langmuir adsorption isotherm. The thermodn. activation parameters for the corrosion reaction were calculated and discussed. Quantum chem. parameters and Fukui function were obtained by DMol3/GGA/PW91/DNP+ level of theory, which was performed using Materials Studiov 8.0 software from Biovia-Accelrys. Monte Carlo simulation was implemented to search for the equilibrium configurations of the PEED/Fe(111) adsorption system, in a 1.0 M hydrochloric acid solution

Portugaliae Electrochimica Acta 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 C16H20N2, Recommanded Product: N1,N2-Dibenzylethane-1,2-diamine.

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