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国家自然科学基金(20773008)

作品数:2 被引量:1H指数:1
相关作者:王慕冰杨萌康思聪徐惠彬相艳更多>>
相关机构:北京航空航天大学更多>>
发文基金:国家自然科学基金国家高技术研究发展计划更多>>
相关领域:理学电气工程化学工程更多>>

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化学与生物改性合成质子交换膜被引量:1
2009年
新型质子交换膜的研究主要集中在Nafion膜的化学或物理改性、化学合成材料的更新以及新型的生物材料燃料电池用质子交换膜的研发。本文对燃料电池用质子交换膜近3年的研究进展做了综述,并对PEMFC质子交换膜的发展前景进行了探讨与预测。
杨萌相艳王慕冰康思聪徐惠彬
关键词:燃料电池质子交换膜化学改性生物材料
Effective Homogeneous Hydrolysis of Phosphodiester and DNA Cleavage by Chitosan-copper Complex
2011年
We aimed to explore the role of chitosan-based metal complexes in catalyzing the hydrolysis of phosphodiesters To this end, we performed detailed studies on the kinetics of the chitosan copper complex (CSCu)-catalyzed hydrolysis of bis(4-nitrophenol) phosphate (BNPP) in Tris-H+ buffer and in an organic solvent. A significant enhancement in the rate of reaction (up to 3 X 105-fold acceleration) was observed at pH 8.0 (25 ℃). The pH depend- ence of BNPP hydrolysis at pH 5.5-9.5 and the UV spectra revealed that the copper-bounded water molecules un- derwent deprotonation to form the active catalytic species CSCu-OH. The kinetic behavior of BNPP catalytic hydrolysis in the Tris-H+ buffer was consistent with that predicted by the Michaelis-Menten kinetics model. An in-ramolecular nucleophilic attack by the copper-bonded hydroxide group on the same activated phosphodiester substrate was proposed as the catalytic mechanism for CSCu-catalyzed reaction system. The results of DNA binding and cleavage experiments indicated electrostatic binding mode of CSCu to DNA as well as the strong capability of CSCu to disturb the supercoiled strand of DNA and cleave it to nicked circular form.
张琦相艳杨汝新司江菊郭红
关键词:CHITOSANKINETICSPHOSPHODIESTERHYDROLYSIS
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