A series of novel thio-triazole derivatives including thiols, thioethers and thiones as well as some corresponding triazolium compounds were conveniently and efficiently synthesized from commercially available haloben...A series of novel thio-triazole derivatives including thiols, thioethers and thiones as well as some corresponding triazolium compounds were conveniently and efficiently synthesized from commercially available halobenzyl halides and thiosemicarbazide. All the new compounds were characterized by 1 H NMR, 13 C NMR, FTIR, MS and HRMS spectra. Their antibacterial and antifungal activities in vitro were evaluated against four Gram-positive bacteria, four Gram-negative bacteria and two fungi by two-fold serial dilution technique. The preliminary bioassay indicated that some prepared triazoles exhibited effective antibacterial and antifungal activities. Especially, 3,4-dichlorobenzyl triazolethione and its triazolium derivatives displayed the most potent activities against all the tested strains.展开更多
A series of naphthalimide azoles as potential antibacterial and antifungal agents were conveniently and efficiently synthesized starting from commercially available 6-bromobenzo[de]isochromene-l,3-dione. All the new c...A series of naphthalimide azoles as potential antibacterial and antifungal agents were conveniently and efficiently synthesized starting from commercially available 6-bromobenzo[de]isochromene-l,3-dione. All the new compounds were characterized by NMR, IR, MS and HRMS spectra. Their antimicrobial activities were evaluated against four Gram-positive bacteria, four Gram-negative bacteria and two fungi using two-fold serial dilution technique. The biological assay indicated that most of the prepared compounds exhibited inhibition to the tested strains. In particular, the triazolium derivatives not only gave higher ef- ficacy than their corresponding precursory azoles, but also demonstrated comparable or even better potency than the reference drugs Chloromycin, Orbifloxacin and Fluconazole. Some factors including structural fragments, pH and ClogP values of the target molecules were also preliminarily discussed.展开更多
Main observation and conclusion The electrochemical thiocyanation/cyclization of aldehyde hydrazones was developed under external oxidant-free and catalyst-free conditions.In contrast to previous thiocyanation,this el...Main observation and conclusion The electrochemical thiocyanation/cyclization of aldehyde hydrazones was developed under external oxidant-free and catalyst-free conditions.In contrast to previous thiocyanation,this electrosynthetic approach enabled a cascade C-H thiocyanation/cyclization through a mild,direct electrolysis manner in an undivided cell without the additive of halogens and stoichiometric oxidants.In this protocol,commercially available and inexpensive sodium thiocyanate was used,which played a dual role as a thiocyanation reagent and electrolyte.This strategy provides expedient access to functionalized sulfur-containing triazolium inner salts with ample scope and diverse functional group tolerance.Based on the findings of mechanistic studies,a reaction mechanism was proposed.展开更多
1-Amino-3-dodecyl-1,2,3-triazolium nitrate, as a novel energetic surfactant, has been synthesized in four steps, namely addition-elimination, cyclization, alkylation and metathesis. Its structure was confirmed by 1H N...1-Amino-3-dodecyl-1,2,3-triazolium nitrate, as a novel energetic surfactant, has been synthesized in four steps, namely addition-elimination, cyclization, alkylation and metathesis. Its structure was confirmed by 1H NMR, IR, and MS. The effects of various reaction parameters, including stoichiometry, reaction temperature and time, were investigated in details. In addition, the physical and chemical properties of this energetic surfactant were measured.展开更多
The thermal decomposition kinetics of 1-amino-l,2,3-triazolium nitrate(ATZ-NO3) was investigated by non-isothermal TG-DTG at various heating rates(2,5,10,15 and 20 ℃/min).The results show that the thermal decompo...The thermal decomposition kinetics of 1-amino-l,2,3-triazolium nitrate(ATZ-NO3) was investigated by non-isothermal TG-DTG at various heating rates(2,5,10,15 and 20 ℃/min).The results show that the thermal decomposition of ATZ-NO3 consists of two stages corresponding to the losing of nitrate anion,substituent group and the splitting of triazole ring respectively.The kinetic triplets of the two stages were described by a three-step method.First,the differential Kissinger and intergral Ozawa methods were used to calculate the apparent activation energies(E) and pre-exponential factors(A) of the two decomposition stages.Second,two calculation methods(intergral (S)atava-(S)esták and differential Achar methods) were used to obtain several probable decomposition mechanism functions.Third,three judgment methods(average,double-extrapolation and Popescu methods) were used to confirm the most probable decomposition mechanism functions.Both reaction models of the two stages were randominto-nucleation and random-growth mechanisms with n=3/2 for the first stage and n=1/3,m=3 for the second stage.The kinetic equations for the two decomposition stages of ATZ-NO3 may be expressed as da/dt=1013.60·e-128970/RT(1-α)[-1n(1-α)]-1/2 and da/dt=1011.41·e-117370/RT(1-α)[-1n(1-α)]-2/3.The thermodynamic parameters including Gibbs free energy of activation(△G≠),entropy of activation(△S≠) and enthalpy of activation(△H≠),for the thermal decomposition reaction were also derived.展开更多
Abstract: The rearrangement of as-triazolium salt (1) to 5-amino-1(2,4-dichloro) benzyl-4-(2,2dimethyl) propionylimidazole (2) with NaH in dimethylformmide(DMF) is described.
基金supported by the National Natural Science Foundation of China (21172181, 81250110089 (The Research Fellowship for International Young Scientists from International (Regional) Cooperation and Exchange Program))the key program from Natural Science Foundation of Chongqing (CSTC2012jjB10026)+1 种基金the Specialized Research Fund for the Doctoral Program of Higher Education of China (SRFDP20110182110007)the Fundamental Research Funds for the Central Universities (XDJK2011D007, XDJK2012B026)
文摘A series of novel thio-triazole derivatives including thiols, thioethers and thiones as well as some corresponding triazolium compounds were conveniently and efficiently synthesized from commercially available halobenzyl halides and thiosemicarbazide. All the new compounds were characterized by 1 H NMR, 13 C NMR, FTIR, MS and HRMS spectra. Their antibacterial and antifungal activities in vitro were evaluated against four Gram-positive bacteria, four Gram-negative bacteria and two fungi by two-fold serial dilution technique. The preliminary bioassay indicated that some prepared triazoles exhibited effective antibacterial and antifungal activities. Especially, 3,4-dichlorobenzyl triazolethione and its triazolium derivatives displayed the most potent activities against all the tested strains.
基金partially supported by National Natural Science Foundation of China [21172181, 81250110089, 81250110554 (The Research Fellowship for International Young Scientists from International (Regional) Cooperation and Exchange Program)]the key program from Natural Science Foundation of Chongqing (CSTC2012jjB10026)+1 种基金the Specialized Research Fund for the Doctoral Program of Higher Education of China (SRFDP 20110182110007)the Fundamental Research Funds for the Central Universities (the key program XDJK2012B026)
文摘A series of naphthalimide azoles as potential antibacterial and antifungal agents were conveniently and efficiently synthesized starting from commercially available 6-bromobenzo[de]isochromene-l,3-dione. All the new compounds were characterized by NMR, IR, MS and HRMS spectra. Their antimicrobial activities were evaluated against four Gram-positive bacteria, four Gram-negative bacteria and two fungi using two-fold serial dilution technique. The biological assay indicated that most of the prepared compounds exhibited inhibition to the tested strains. In particular, the triazolium derivatives not only gave higher ef- ficacy than their corresponding precursory azoles, but also demonstrated comparable or even better potency than the reference drugs Chloromycin, Orbifloxacin and Fluconazole. Some factors including structural fragments, pH and ClogP values of the target molecules were also preliminarily discussed.
基金Support by the National Natural Science Foundation of China(No.21901052)the Guangdong Province Universities and Colleges Pearl River Scholar Funded Scheme(2019)+1 种基金the Guangzhou Education Bureau University Scientific Research Project(No.201831845)Guangdong Basic and Applied Basic Research Foundation(No.2020A1515010722)is most gratefully acknowledged.
文摘Main observation and conclusion The electrochemical thiocyanation/cyclization of aldehyde hydrazones was developed under external oxidant-free and catalyst-free conditions.In contrast to previous thiocyanation,this electrosynthetic approach enabled a cascade C-H thiocyanation/cyclization through a mild,direct electrolysis manner in an undivided cell without the additive of halogens and stoichiometric oxidants.In this protocol,commercially available and inexpensive sodium thiocyanate was used,which played a dual role as a thiocyanation reagent and electrolyte.This strategy provides expedient access to functionalized sulfur-containing triazolium inner salts with ample scope and diverse functional group tolerance.Based on the findings of mechanistic studies,a reaction mechanism was proposed.
文摘1-Amino-3-dodecyl-1,2,3-triazolium nitrate, as a novel energetic surfactant, has been synthesized in four steps, namely addition-elimination, cyclization, alkylation and metathesis. Its structure was confirmed by 1H NMR, IR, and MS. The effects of various reaction parameters, including stoichiometry, reaction temperature and time, were investigated in details. In addition, the physical and chemical properties of this energetic surfactant were measured.
文摘The thermal decomposition kinetics of 1-amino-l,2,3-triazolium nitrate(ATZ-NO3) was investigated by non-isothermal TG-DTG at various heating rates(2,5,10,15 and 20 ℃/min).The results show that the thermal decomposition of ATZ-NO3 consists of two stages corresponding to the losing of nitrate anion,substituent group and the splitting of triazole ring respectively.The kinetic triplets of the two stages were described by a three-step method.First,the differential Kissinger and intergral Ozawa methods were used to calculate the apparent activation energies(E) and pre-exponential factors(A) of the two decomposition stages.Second,two calculation methods(intergral (S)atava-(S)esták and differential Achar methods) were used to obtain several probable decomposition mechanism functions.Third,three judgment methods(average,double-extrapolation and Popescu methods) were used to confirm the most probable decomposition mechanism functions.Both reaction models of the two stages were randominto-nucleation and random-growth mechanisms with n=3/2 for the first stage and n=1/3,m=3 for the second stage.The kinetic equations for the two decomposition stages of ATZ-NO3 may be expressed as da/dt=1013.60·e-128970/RT(1-α)[-1n(1-α)]-1/2 and da/dt=1011.41·e-117370/RT(1-α)[-1n(1-α)]-2/3.The thermodynamic parameters including Gibbs free energy of activation(△G≠),entropy of activation(△S≠) and enthalpy of activation(△H≠),for the thermal decomposition reaction were also derived.
文摘Abstract: The rearrangement of as-triazolium salt (1) to 5-amino-1(2,4-dichloro) benzyl-4-(2,2dimethyl) propionylimidazole (2) with NaH in dimethylformmide(DMF) is described.