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1)  coupling of proton pump out and electron trans fer
电子传递与质子泵出偶联
2)  coupling of electron transfer and proton pump
电子传递与质子转移偶联
3)  electron transfer couplet
电子传递偶联体
4)  proton transfer
质子传递
1.
The bacteriorhodopsin crystal structure from PDB (1R84) was taken as the model system to study the possible mechanism of the proton transfer by molecular simulations.
用CHARMM程序以细菌紫红质1R84晶体为模型,模拟了在等温定容条件下细菌紫红质在1ps过程中的变化,分析了与质子传递相关的ASP85,ASP212和水分子与视黄醛间氢键的结构变化情况。
2.
Solvent effects on proton transfer in ammonia-hydrogen halide complexes have been investigated by using the cluster, continuum, and combined discrete-continuum models, respectively.
分别采用分子簇模型、连续介质模型和离散 -连续组合模型研究了XH NH3 (X =F ,Cl ,Br)分子内质子传递的溶剂效应 。
3.
Proton transfer processes of the system NH4+ + NH3→NH3 + NH4+ , NH4+ + NH2CH3→NH3+NH3CH3+ , NH4++NH(CH3)2→NH3+NH2(CH3)2+ and NH3CH3++NH2CH3→NH2CH3+NH3CH3+ have been studied by ab initio SCF method at RHF/6-31G level.
用从头计算法在HF/6-31G~*基组水平上研究了NH_4~++NH_3→NH_3+NH_4~+,NH_4~++NH_2CH_3→NH_3+NH_3CH_3~+,NH_4~++NH(CH_3)_2→NH_3+NH_2(CH_3)_2~+以及NH_3CH_3~++NH_2CH_3→NH_2CH_3+NH_3CH_3~+等4个体系的质子传递反应的机理。
5)  electron transfer
电子传递
1.
Study progress of electron transfer through DNA helix;
DNA内电子传递特性的研究进展
2.
To study the extra-cellular electron transfer process by which electrons can be transferred from microbial cells to Fe(Ⅲ) oxides, two experiment systems were established: traditional anaerobic cultivation system and novel microbial fuel cell system.
微生物异化还原金属氧化物的过程中,关键问题是微生物如何把电子传递给最终的固态电子受体。
3.
However,electron transfer is restricted,because most Fe(Ⅲ)is insoluble under natural conditions.
Fe(Ⅲ)的地球化学丰度比较高,为Fe(Ⅲ)还原菌提供了充足的电子受体,但自然中Fe(Ⅲ)多以不溶形式存在,使电子传递受阻。
6)  electron transport
电子传递
1.
Study on the electron transport process of microbe on the mineral surface using the microbe fuel cell;
利用微生物电池研究微生物在矿物表面电子传递过程
2.
According to defferent action targets including cell membrane, cell wall, protein, nucleic acid and electron transport, anti fungal antibiotics were divided into five types.
抗真菌药物根据其作用靶位分为抑制真菌细胞膜、细胞壁、蛋白质和核酸合成及抑制电子传递等5种类型。
3.
The action site on photosynthetic electron transport and mode of Alternaria alternata crofton-weed toxin(AAC-toxin)were investigated in wild and mutants of Chlamydomonas reinhardtii.
以野生型莱茵藻和其抗除草剂突变体为材料,检测链格孢菌毒素在光合电子传递链上的作用位点和模式的结果表明,此种毒素抑制Q_A至Q_B的电子传递,是光系统Ⅱ抑制剂,其作用模式类似于苯酚类型的除草剂。
补充资料:同志顾云下第出京偶有寄勉
【诗文】:
凤策联华是国华,春来偶未上仙槎。乡连南渡思菰米,
泪滴东风避杏花。吟聒暮莺归庙院,睡消迟日寄僧家。
一般情绪应相信,门静莎深树影斜。



【注释】:



【出处】:
全唐诗:卷676-47
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