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电化学(中英文) ›› 2004, Vol. 10 ›› Issue (3): 307-313. 

• 研究论文 • 上一篇    下一篇

N-Boc-APT合成及其自组装修饰金电极电化学行为

孙如,葛健锋,王梅,顾仁敖   

  1. 苏州大学化学化工学院,苏州大学材料工程学院,苏州大学化学化工学院,苏州大学化学化工学院 江苏苏州215006 ,江苏苏州215006 ,江苏苏州215006 ,江苏苏州215006
  • 收稿日期:2004-08-28 修回日期:2004-08-28 出版日期:2004-08-28 发布日期:2004-08-28

Synthesis of (S)-3-Phenylpropane-2-tert-butoxycarbonylamino- 1-thiol and its Electrochemical Behavior Self-assembled on Gold

SUN Ru~   

  1. (1), GE Jian-feng~(2), WANG Mei~(1),GU Ren-ao~(*1) (1. Department of Chemistry and Chemical Engineering, Suzhou University,Jiangsu 215006, China 2.~( )Department of Material and Engineering,Suzhou University, Jiangsu 215006,China
  • Received:2004-08-28 Revised:2004-08-28 Published:2004-08-28 Online:2004-08-28

摘要:  以L 苯丙氨酸为原料经还原反应得到氨基醇,再用Boc基团对中间体进行氨基保护得到(S) 3 苯基 2 叔丁氧羰基氨基 1 丙醇,甲磺酰化后与硫代乙酸钾在DMF中反应得到(S) 3 苯基 2 叔丁氧羰基氨基 1 丙硫醇乙酸酯,再脱除乙酰基后得到目标产物(S) 3 苯基 2 叔丁氧羰基氨基 1 丙硫醇(N Boc APT).分别应用红外光谱、核磁共振对中间体和目标化合物进行表征.同时,利用自组装技术将N Boc APT修饰于金电极表面,并测定其相关的电化学性能;此外,还将金纳米粒子组装在上述修饰电极上,并研究亚甲基蓝于该修饰电极的电化学行为.结果表明,金纳米粒子对该电极过程具有促进作用.

关键词: N-Boc-APT, 不对称合成, 自组装, 电化学, 金纳米粒子

Abstract: The synthesis of (S)-3-Phenylpropane-2-tert-butoxycarbonylamino- 1-thiol(N-Boc-APT) from L-phenylalanine was reported. L-Phenylalanine was reduced to the corresponding amino alcohol, protection of the amino group using tert-butyl pyrocarbonate gave (S)-2-tert-butoxycarbonylamino-3-phenylpropane-1-ol, which was then O-mesylated and treated with potassium thioacetate in DMF to give 3-phenylpropane-2-tert- butoxycarbonylamino-1-etylmercapto. After the acetyl group was removed with ammonia in alcohol, the desired target molecular was obtained. The structure of intermediate and target molecular was conformed by IR and ~(1)HNMR. We made N-Boc-APT self-assemble-modificated gold electrode and investigated its electrochemical behavior. The CV results of methylene blue on nano-Au/N-Boc-APT SAM/Au electrode showed that nano-Au could speed this electron transfer process.

Key words: (S)-3-Phenylpropane-2-tert-butoxycarbonylamino-1-thiol, Asymmetric synthesis, Self-assembled, Electrochemistry, Gold nanoparticals, Methylene blue

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