Tetrabromoalkylthiacalix[4]arenes(1a and 1b) reacted with excess bis(tetraethylammonium)-bis(1,3- dithiole-2-thione-4,5-dithiol)zincate(2) to give thiacalix[4]arene-thiones(3a and 3b) in the presence of Na2S...Tetrabromoalkylthiacalix[4]arenes(1a and 1b) reacted with excess bis(tetraethylammonium)-bis(1,3- dithiole-2-thione-4,5-dithiol)zincate(2) to give thiacalix[4]arene-thiones(3a and 3b) in the presence of Na2S. Two novel bistetrathiafulvalene-attached thiacalix[4]arene assemblies(5a and 5b) formed via triethyl phosphite-mediated cross-coupling of thiacalix[4]arene-thiones(3a and 3b) and 4,5-biscyanoethylthio-1,3-dithiole-2-one(4). All the four new compounds were characterized by 1H NMR, 13C NMR, IR, MS spectra and elemental analysis. Meanwhile, the structures of thiacalix[4]arene-thiones(3a and 3b) were identified by X-ray analysis. In addition, the cyclic voltammograms of the resulting thiacalix[4]arenes containing electroactive TTF units(5a and 5b) were provided.展开更多
glucose oxidase (GOD) electrode with tetrathiafulvalene(TTF) as an elec-tron transfer mediator is described. By means of Nafion, TTF was modified on aglassy carbon(GC) electrode surface, and glucose oxidase was then i...glucose oxidase (GOD) electrode with tetrathiafulvalene(TTF) as an elec-tron transfer mediator is described. By means of Nafion, TTF was modified on aglassy carbon(GC) electrode surface, and glucose oxidase was then immobilized onthe TTF-Nafion film, forming a GOD-TTF-Nafion enzyme electrode. Characteris-tics of the sensor are shown by cyclic voltammetry and constant potential measure-ments. The sensor responds rapidly to glucose, the time required to reach 95% ofthe steady-state current is less than 60s. The sensor displays a sensitive catalyticcurrent response to glucose and can be operated in a potential range in which theoxidation of common interfering species, such as ascorbic acid and uric acid, doesnot occur. The sensor is stable for more than 30 days at 4℃ and plasma glucose assays were correlated with spectrophotometry(,i = 10 , r= 0. 995).展开更多
A polymer containing bis(ethylenedithio)-tetrathiafulvalene moiety was synthesized and its electrochemical properties were studied by cyclic voltammetry. The charge transfer complexes of the polymer with TCNQ and I//...A polymer containing bis(ethylenedithio)-tetrathiafulvalene moiety was synthesized and its electrochemical properties were studied by cyclic voltammetry. The charge transfer complexes of the polymer with TCNQ and I//2 were obtained by chemical oxidation in dichlorobenzene. All of them are semi-conductors. A film of the polymer was obtained by casting. Its conductivity, after oxidation with iodine, is 2.24 multiplied by 10** minus **6S center dot cm** minus **1 and its conducting state is stable in air. (Author abstract) 10 Refs.展开更多
基金Supported by the National Natural Science Foundation of China(Nos.201172105, 20872058)
文摘Tetrabromoalkylthiacalix[4]arenes(1a and 1b) reacted with excess bis(tetraethylammonium)-bis(1,3- dithiole-2-thione-4,5-dithiol)zincate(2) to give thiacalix[4]arene-thiones(3a and 3b) in the presence of Na2S. Two novel bistetrathiafulvalene-attached thiacalix[4]arene assemblies(5a and 5b) formed via triethyl phosphite-mediated cross-coupling of thiacalix[4]arene-thiones(3a and 3b) and 4,5-biscyanoethylthio-1,3-dithiole-2-one(4). All the four new compounds were characterized by 1H NMR, 13C NMR, IR, MS spectra and elemental analysis. Meanwhile, the structures of thiacalix[4]arene-thiones(3a and 3b) were identified by X-ray analysis. In addition, the cyclic voltammograms of the resulting thiacalix[4]arenes containing electroactive TTF units(5a and 5b) were provided.
文摘glucose oxidase (GOD) electrode with tetrathiafulvalene(TTF) as an elec-tron transfer mediator is described. By means of Nafion, TTF was modified on aglassy carbon(GC) electrode surface, and glucose oxidase was then immobilized onthe TTF-Nafion film, forming a GOD-TTF-Nafion enzyme electrode. Characteris-tics of the sensor are shown by cyclic voltammetry and constant potential measure-ments. The sensor responds rapidly to glucose, the time required to reach 95% ofthe steady-state current is less than 60s. The sensor displays a sensitive catalyticcurrent response to glucose and can be operated in a potential range in which theoxidation of common interfering species, such as ascorbic acid and uric acid, doesnot occur. The sensor is stable for more than 30 days at 4℃ and plasma glucose assays were correlated with spectrophotometry(,i = 10 , r= 0. 995).
基金This work is supported by the National Natural Science Foundation of China(No.29574156)and the Foundation of the Open Laboratory of Organic Solids,Chinese Academy of Sciences
文摘A polymer containing bis(ethylenedithio)-tetrathiafulvalene moiety was synthesized and its electrochemical properties were studied by cyclic voltammetry. The charge transfer complexes of the polymer with TCNQ and I//2 were obtained by chemical oxidation in dichlorobenzene. All of them are semi-conductors. A film of the polymer was obtained by casting. Its conductivity, after oxidation with iodine, is 2.24 multiplied by 10** minus **6S center dot cm** minus **1 and its conducting state is stable in air. (Author abstract) 10 Refs.