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国家自然科学基金(20633060)

作品数:7 被引量:11H指数:2
相关作者:林宪杰李平步宇翔毕思玮王卫华更多>>
相关机构:山东大学菏泽学院曲阜师范大学更多>>
发文基金:国家自然科学基金博士科研启动基金山东省自然科学基金更多>>
相关领域:理学环境科学与工程更多>>

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7 条 记 录,以下是 1-8
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First-Principle Studies on Adsorption of Cu^+ and Hydrated Cu^+ Cations on Clean Si(111) Surface
2010年
To study the adsorption behavior of Cu^+ in aqueous solution on semiconductor surface, the interactions of Cu^+ and hydrated Cu^+ cations with the clean Si(111) surface were investigated via hybrid density functional theory(B3LYP) and Moller-Plesset second-order perturbation(MP2) method. The clean Si(111) surface was described with cluster models(Si14H17, Si16H20 and Si22H21) and a four-silicon layer slab under periodic boundary conditions. Calculation results indicate that the bonding nature of adsorption of Cu^+ on Si surface can be viewed as partial covalent as well as ionic bonding. The binding energies between hydrated Cu^+ cations and Si(111) surface are large, suggesting a strong interaction between them. The coordination number of Cu^+(H2O)n on Si(111) surface was found to be 4. As the number of water molecules is larger than 5, water molecules form a hydrogen bond network. In aqueous solution, Cu^+ cations will safely attach to the clean Si(111) surface.
CHENG Feng-mingSHENG Yong-liLI Meng-huaLIU Yong-junYU Zhang-yuLIU Cheng-bu
关键词:ADSORPTION
丝氨酸蛋白酶催化三聚体类似物中质子转移的理论研究--低垒氢键在酶催化中存在的可能性及其意义被引量:4
2008年
在密度泛函理论B3LYP/6-311++G**水平上,系统探讨了乙酸根-(5-甲基咪唑)-甲醇三聚体中低垒氢键的形成过程,以此来考察丝氨酸蛋白酶催化三聚体在催化进程中的质子转移行为.在模型体系中,随着质子转移的进行,各种类型的氢键包括从传统氢键到低垒氢键的演变都可以很好的得以体现.进一步地研究表明,溶剂效应在低垒氢键与传统氢键的相互转化方面起着重要的调控作用.由于质子可以在质子授-受体之间自由地移动,因此,由此而产生的额外稳定化能应当归因于体系在质子转移前后相互作用能的差异.并且,稳定化能的大小与具体的研究体系相关.在模型体系的基础上,进而利用ONIOM分层算法,通过考察接近于真实体系的复杂模型,进一步证实了在丝氨酸蛋白酶催化进程中催化三聚体之间的单质子转移机理,排除了低垒氢键存在的可能性.因此,丝氨酸蛋白酶催化肽键水解的高效性应当归因于其它因素,而不是低垒氢键的形成,这与有关的实验报道是一致的.
李平王卫华毕思玮宋蕊步宇翔
关键词:质子转移
甲醇协助丙交酯开环聚合反应的理论研究被引量:2
2008年
采用密度泛函理论在B3LYP/6-31G(d,p)水平上研究了甲醇协助的丙交酯开环聚合反应,探讨了1~3个甲醇分子参与的丙交酯聚合反应机理,考察了溶剂化效应对聚合反应的影响.结果表明,甲醇协助的丙交酯开环聚合按加成-消除机理进行;甲醇分子作为质子给体与受体通过与丙交酯形成环状氢键促进开环聚合,随着甲醇分子数的增加,环状氢键的张力逐渐减小,反应能垒随之降低;溶剂化效应对反应机理和反应势垒的影响均可忽略不计.
刘莉朱荣秀张冬菊刘成卜
关键词:丙交酯开环聚合甲醇反应机理密度泛函理论
Discrimination of Glycine Enantiomers by the Biologically Important Phosphocompounds:A Theoretical Prediction
2009年
With the aid of high-level B3LYP and MP2 calculations, three new neutral structures of glycine (iin, ivn and vn, see Fig. 2) were obtained and validated by frequency calculations. The structural and energetic analyses showed that iin, ivn and vn are enantiomers to the previous IIn, IVn and Vn (J. Am. Chem. Soc. 1992, 114, 9568.), respectively. Owing to the presence of these novel conformers, a redistribution of the populations of glycine conformers is resulted in and causes the remarkable decrease of the most stabilized Ip (from 48% to 38%). It indicated that the simple glycine molecule can show chirality under certain conditions. The interacting modes of glycine enantiomeric pairs (e.g., ivn and IVn) with PG showed large differences (Fig. 4); in addition, their interaction energies corrected with basis set superposition errors (BSSE) were calculated to be --66.81 and -46.99 kJ tool^-1, respectively. Accordingly, the glycine enantiomers can be potentially applied to the chiral recognition in biological and pharmaceutical areas.
杨刚刘成卜祖元刚付玉杰周丽君
关键词:CONFORMATIONGLYCINEPOPULATION
聚L-丝氨酸修饰电极循环伏安法测定肾上腺素被引量:1
2010年
建立循环伏安法测定肾上腺素的新方法.制备聚L-丝氨酸修饰的化学修饰电极,用其测定了肾上腺素.结果表明,在pH5.0的磷酸盐缓冲溶液(PBS)中,扫描速率为140mV/s,循环扫描电位在0~0.6V时,肾上腺素在聚L-丝氨酸修饰玻碳电极上出现一对灵敏的氧化还原峰,峰电位为:Epa=0.364V,Epc=0.311V,ΔE=0.53V;测定肾上腺素的线性范围为5.0×10-7~2.0×10-4mol.L-1,方法检出限1.0×10-8mol.L-1.该方法简单、快速、灵敏、电极稳定性好,用于针剂中肾上腺素的测定,取得满意的结果.
李霞陈美凤林宪杰
关键词:化学修饰电极L-丝氨酸肾上腺素
温控分子动力学研究迷你蛋白色氨酸笼的折叠机制
迷你蛋白"色氨酸笼"(Trp-cage)由20个氨基酸组成,具有紧凑、明确的三级结构。由于其分子量较小,结构典型且可快速折叠,"色氨酸笼"是研究蛋白质去折叠和折叠机制的理想模型(PDB ID:1L2Y)。本工作运用温控分...
吴晓敏祖元刚杨志伟杨刚
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聚缬氨酸修饰电极在抗坏血酸共存下选择性测定去甲肾上腺素被引量:4
2009年
利用循环伏安法制备了聚缬氨酸修饰电极,在缬氨酸浓度为0.01mol/L的磷酸盐缓冲溶液(pH=9.0)中,起止电位范围为1.0—2.4V,以40mV/s扫描速率循环扫描9周进行聚合。聚缬氨酸膜对去甲肾上腺素(NE)的电化学氧化具有明显的催化作用。研究了NE在聚缬氨酸修饰电极上的电化学行为,建立了测定NE的电化学分析新方法。pH值在2.2—8.0范围内,研究了磷酸盐缓冲溶液pH值对NE电化学行为的影响。结果表明.氧化还原峰电位随pH值升高发生负移;在pH=4.0磷酸盐缓冲溶液中,NE在修饰电极上呈现1对灵敏的氧化还原峰,利用循环伏安法测定NE还原峰电流可排除抗坏血酸(AA)干扰。NE在聚缬氨酸修饰电极上的还原峰电流与其浓度在4.6×10^-7~1.1×10^-5mol/L和1.1×10^-5~1.2×10^-4mol/L范围内呈良好线性关系;相关系数分别为0.9957和0.9918;检出限(S/N=3)为8.0×10^-8mol/L;其回归方程为ipc(A)=6.80×10^-7+1.05c,ipc(A):1.23×10^-5+0.16c。修饰电极具有良好的灵敏度、选择性和稳定性,可用于去甲肾上腺素针剂样品分析。
马心英林宪杰
关键词:化学修饰电极缬氨酸去甲肾上腺素
Proton Transfer Isomerization of Pyrazole in the Ground State:σ vs π Mechanism and Water Assisting Effect
2008年
The proton transfer isomerization of pyrazole and the water assisting effect by looping 1 to 4 water molecules on the singlet state potential energy surface have been investigated by using hybrid density functional theory method (B3PW91) with a 6-311++G^** basis set. Two mechanisms were proposed to explain the mono- and multi-water assisting effects, respectively. The reactants and products of all groups have been characterized on their potential energy surfaces. For the isomerizafion of monomolecule pyrazole, the isomeriz'ation energy barrier is 46.4 kcal·mol^-1. For the monohydration assisting mechanism, the reactant complex is connected to the product complex via two saddle points. The corresponding isomerization barriers are 46.7and 23.0 kcal·mol^-1, respectively. As to the multihydration assisting mechanism, the isomerization barriers are 12.0, 10.9 and 13.14 kcal·mol^-1 accordingly, when the number of water molecules is 2, 3 and 4, respectively. The multihydration assisting isomerization can occur in water-dominated environments, for example, in the organism, and thereby is crucial to energy transference. The deproton and dehydrogen energies of monomolecule pyrazole and various hydrated pyrazoles were calculated and then found much bigger than the isomerization barriers of their relative complexes, suggesting the impossibility of deprotonation or dehydrogenation. The isomerization of pyrazole is a proton-coupling-electron-migration process, but two different mechanisms are noticed, viz. σ- and π-type mechanisms. The π-bond of pyrazole participates in isomerization in the π-type mechanism, whereas only o-electron takes part in isomerization in the σ-type mechanism.
李志强步宇翔赵显
关键词:PYRAZOLE
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