利用苄硫醇、溴十一酸、4,7,10-三氧-1,13-十三烷二胺等原料,通过活化酯法和NH3/Na还原脱苄基,合成了一种含巯基的生物素衍生物——11-巯基十一酸-(13-生物素酰胺基-4,7,10-三氧十三烷基)酰胺,并用1 H NMR、IR对产物的分子结构进行了表...利用苄硫醇、溴十一酸、4,7,10-三氧-1,13-十三烷二胺等原料,通过活化酯法和NH3/Na还原脱苄基,合成了一种含巯基的生物素衍生物——11-巯基十一酸-(13-生物素酰胺基-4,7,10-三氧十三烷基)酰胺,并用1 H NMR、IR对产物的分子结构进行了表征.11-巯基十一酸-(13-生物素酰胺基-4,7,10-三氧十三烷基)酰胺可以在金表面自组装,而自组装膜在分子器件、生物与化学传感器、生物膜等很多方面有着广泛的应用.展开更多
The self assembled monolayer(SAM) of 11 mercaptoundecanoic acid [HS(CH 2) 10 COOH] was formed on a gold electrode and the effect of the charge of end group on the electrochemical response of Fe(CN) 3- 6 at the SAM mod...The self assembled monolayer(SAM) of 11 mercaptoundecanoic acid [HS(CH 2) 10 COOH] was formed on a gold electrode and the effect of the charge of end group on the electrochemical response of Fe(CN) 3- 6 at the SAM modified electrode was studied by cyclic voltammetry. At high pH, when the —COOH groups are dissociated, the current of Fe(CN) 3- 6 is suppressed; as the solution pH is lowered, the current of Fe(CN) 3- 6 increases. The electrochemical titration curve was obtained by correlating the currents of Fe(CN) 3- 6 to the different pH values of electrolyte, from which the surface p K a was obtained to be 3.0±0.2. Furthermore, the reason of small p K a value was explained using SAMs of different surface coverage.展开更多
文摘利用苄硫醇、溴十一酸、4,7,10-三氧-1,13-十三烷二胺等原料,通过活化酯法和NH3/Na还原脱苄基,合成了一种含巯基的生物素衍生物——11-巯基十一酸-(13-生物素酰胺基-4,7,10-三氧十三烷基)酰胺,并用1 H NMR、IR对产物的分子结构进行了表征.11-巯基十一酸-(13-生物素酰胺基-4,7,10-三氧十三烷基)酰胺可以在金表面自组装,而自组装膜在分子器件、生物与化学传感器、生物膜等很多方面有着广泛的应用.
文摘The self assembled monolayer(SAM) of 11 mercaptoundecanoic acid [HS(CH 2) 10 COOH] was formed on a gold electrode and the effect of the charge of end group on the electrochemical response of Fe(CN) 3- 6 at the SAM modified electrode was studied by cyclic voltammetry. At high pH, when the —COOH groups are dissociated, the current of Fe(CN) 3- 6 is suppressed; as the solution pH is lowered, the current of Fe(CN) 3- 6 increases. The electrochemical titration curve was obtained by correlating the currents of Fe(CN) 3- 6 to the different pH values of electrolyte, from which the surface p K a was obtained to be 3.0±0.2. Furthermore, the reason of small p K a value was explained using SAMs of different surface coverage.