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1)  Fe-Fe hydrogenase
铁铁氢化酶
1.
Synthesis and Properties of Diiron Complexes as Biomimetic Models for the Active Site of Fe-Fe Hydrogenases;
铁铁氢化酶活性中心模型配合物的合成和性质研究
2.
The Fe-Fe hydrogenases, which are efficient enzyme in hydrogen production than other types of hydrogenases, have inspired chemists in the bioinorganic community to synthesize close mimics of their active sites in the search for hydrogen production catalysts.
铁铁氢化酶以其独特的活性中心铁硫簇结构和高效的催化氢气氧化还原的性能,引起了很多化学家的兴趣。
3.
In order to investigate the function of the bridged-N in the active site of the Fe-Fe hydrogenase, we try to introduce a carboxyl-functionalized phosphine ligand to the diiron complex.
自然界中微生物体内的铁铁氢化酶能够可逆催化质子还原产氢,蛋白质晶体研究结果表明其活性中心具有双八面体的蝶状几何构型,与金属有机配合物[Fe_2(μ-SR)_2(CO)_(6-n)L_n]的结构非常相似。
2)  Fe-only hydrogenase
唯铁氢化酶
1.
Because of the simple structure and high efficiency,biomimetic models related to the active site of the Fe-only hydrogenase are of particularinterest to bioinorganic chemists.
唯铁氢化酶能高效可逆催化质子还原产氢,其活性中心具有双八面体的蝶状几何结构,与金属有机配合物[Fe_2(μ-SR)_2(CO)_(6-x)L_x]的结构非常相似。
2.
Since the first crystal structure of the Fe-only hydrogenase was published in 1998, intensive efforts have been spent on the structural and functional models of Fe-only hydrogenase due to its great capability of catalyzing the reduction of protons to molecular hydrogen at extraordinarily high rates.
自从1998年唯铁氢化酶的第一个晶体结构发表以来,由于它可高效地催化质子还原成氢气,其活性中心的结构和功能模拟受到了广泛关注。
3.
Fe-only hydrogenase can catalyze the reduction of protons to molecular hydrogen and the oxidation of hydrogen to protons at extraordinarily high rates.
本论文通过在氮杂二铁二硫配合物引入五元和六元杂环合成了一系列唯铁氢化酶活性中心的模型配合物,期望电荷密度较大的五元杂环的引入,使质子化更易发生,电荷密度较小的六元杂环的引入可以降低还原电位。
3)  iron-only hydrogenases
全铁氢化酶
4)  iron catalase
铁过氧化氢酶
5)  ferric hydroxide
氢氧化铁
1.
The preparation of ferrate from dregs of ferric hydroxide and its application for decolorizing colored water;
高铁酸盐由氢氧化铁残渣再制备及其用于水体脱色的研究
2.
Removal of lead and arsenic from the alkaline etching liquid by coprecipitation with calcium carbonate and ferric hydroxide;
碳酸钙和氢氧化铁共沉淀脱除碱性蚀刻液中铅砷
3.
Direct Determination of Hydroquinone in Waste Water by Differential Pulse Voltammetry on Ferric Hydroxide Modified Silicone Oil-Carbon Paste Electrode;
在氢氧化铁修饰的硅油碳糊电极上微分脉冲伏安法直接测定污水中的痕量对苯二酚
6)  iron hydroxide
氢氧化铁
1.
The preparation of a novel natural graphite based anode material coated with iron hydroxide has been studied.
合成并研究了一种包覆一层氢氧化铁的天然石墨材料 ,它可作为一种新型锂离子电池负极材料。
2.
IR, XRD, SEM and TEM analyses show that crystalline minerals in the iron hydroxide sediments are mainly weakly-crystallized goethite with small amounts of illite and montmorillonite.
铁质析出物的XRD、IR、SEM和TEM分析表明 ,氢氧化铁的结晶程度较低 ,主要结晶相为针铁矿 ,其次为少量伊利石、蒙脱石和石英。
3.
Based on the characteristic of ammoniacal solution,add an overdose of ammonia water to the bath,which will react with iron to form iron hydroxide precipitant,thus separated from chromium bath and impurities(such as copper,zinc,nickel,etc.
根据氨性溶液的特性,向镀液中加入过量的氨水与铁作用生成氢氧化铁沉淀,从而与镀铬液及杂质金属,如:铜、锌、镍等分离。
补充资料:铁氢化钾
分子式:
分子量:
CAS号:

密度:1.85(25℃)
性状:深红色单斜晶体
溶解情况:溶于水。
用途:用于印染、电镀、制革等工业。并用于制颜料和蓝晒图纸等。
制备或来源:将氯气通入亚铁氢化钾溶液氧化制得。
备注:加热时分解。在碱性介质中是强氧化剂。与亚铁盐溶液生成腾氏蓝沉淀。


说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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