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1)  molecular transport
分子传递
2)  intramolecular proton transfer
分子内质子传递
1.
The theoretical elucidation for different intramolecular proton transfer modes of hypocrellin A and hypericin
HA和HYP分子内质子传递模式差异的理论研究(英文)
3)  intramolecular energy transfer
分子内能量传递
1.
Intramolecular energy transfer processes for these complexes were discussed in detail.
详细讨论了配合物的分子内能量传递过程。
2.
The efficiency and rate constant of intramolecular energy transfer (lEnT) from porphyrin moiety to phthalocyaneine in each model was.
计算了分子内能量传递过程的效率(φ_(EnT))及速率常数(κ_(EnT))。
4)  intramolecular hydrogen transfer
分子内氢传递
1.
Various quantum chemical methods, including MNDO, AM1, HF/3-21G, HF/6-31G~**, were employed to investigate the intramolecular hydrogen transfer (IHT) process of 9-hydroxyphenalen-1-one (9-HPO), the result was compared with X-ray structure data.
借助MNDO、AM 1、HF/ 3 2 1G、HF/ 6 31G 量子化学理论计算方法 ,对 9 羟基苯并萘酮 (9 HPO)的分子内氢传递过程进行了理论探讨 ,并与X射线衍射的结构数据作了比较。
5)  intermolecular energy transfer
分子内能力传递
6)  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。
补充资料:络合物型高分子传递试剂
分子式:
CAS号:

性质:指一类通过络合键使活性基团与聚合物骨架相连的能将某一化学反应转递给瓜物(多为可剂性试剂)的高分子化试剂。如聚4-乙烯吡啶等高分子络合剂与小分子卤代试剂络合产生的高分子卤化试剂,可用于不饱和脂肪烃和芳香烃的加成性卤经反应。络合物型高分子转递试剂的特点是试剂的制备和再生容易,可以反复多次使用,反应后反应产物易于与其他副产物和原料分离,在工业化生产中具有重要意义。

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