1)  dehydroisomerization
脱氢异构
1.
The studies in the catalysts for dehydroisomerization of n-butane are reviewed.
综述了正丁烷一步脱氢异构催化剂的研究现状。
2)  dehydrogenation
脱氢
1.
High-temperature sensible heat recovery technology for effluent from ethylbenzene dehydrogenation unit;
乙苯脱氢制苯乙烯反应出料高温显热回收技术
2.
Preparation and characterization of Pt-Sn-Li/Al_2O_3/FeCrAl catalyst and its catalytic performance for long chain alkane dehydrogenation;
Pt-Sn-Li/Al_2O_3/FeCrAl催化剂的制备、表征和长链烷烃脱氢催化性能
3.
Effect of Preparation Methods on the Performance of Cr/Si-2 Catalysts during the Dehydrogenation of Ethane to Ethylene with CO_2;
制备方法对Cr/Si-2催化剂在CO_2氧化乙烷脱氢制乙烯反应中的催化性能的影响
3)  dehydrogenation
氧化脱氢
1.
Synthesis and dehydrogenation of 4-nitro benzoyl acylhydrazines;
对硝基苯甲酰芳肼的合成及氧化脱氢研究
2.
Synthesis of adipic-1′,6′-bis(4-halogenphenyl hydrazine) and its dehydrogenation;
己二酰-1′,6′-双(4-卤苯肼)的合成及其氧化脱氢研究
3.
Synthesis of Adipic-1′,6′-Bis(4-Nitrophenyl Hydrazine) and Its Dehydrogenation;
己二酰-1′,6′-双(4-硝基苯肼)的合成及其氧化脱氢研究
4)  ethylbenzene dehydrogenation
乙苯脱氢
1.
Effect of K_2O on forming of KFe_(11)O_(17) in catalyst for ethylbenzene dehydrogenation;
钾含量对乙苯脱氢催化剂中KFe_(11)O_(17)物相形成的影响
2.
Reclaimation of ethylbenzene dehydrogenation tail gas;
乙苯脱氢尾气的回收利用
3.
Effect of calcination condition on the water-tolerant stability of ethylbenzene dehydrogenation catalyst;
焙烧条件对乙苯脱氢催化剂耐水性能影响的研究
5)  Oxidative dehydrogenation
氧化脱氢
1.
Catalytic performance of oxidative dehydrogenation of propane to propene over the cobalt oxide/titanium-bearing blast furnace slag catalyst;
氧化钴/高炉渣催化剂的丙烷氧化脱氢性能
2.
Progress in catalytic system of propane oxidative dehydrogenation;
丙烷氧化脱氢反应催化剂体系研究进展
3.
study of oxidative dehydrogenation of C_2H_6 on La_2O_3;
La_2O_3催化剂上乙烷氧化脱氢反应的研究
6)  dehydrogenase
脱氢酶
1.
The application of method for measurement of TTC-dehydrogenase activity in dominant bacteria screening of coal coking waste water;
用TTC-脱氢酶活性测定法筛选焦化废水优势菌
2.
The Develop of The Instrument for Measuring TTC-Dehydrogenase Activity;
TTC—脱氢酶活性测定仪的研制
3.
Study on IgG-Glucosedehydrogenase Conjugates;
免疫球蛋白G-葡萄糖脱氢酶结合物的研究
参考词条
补充资料:顺-反式异构体(cistrans isomer),1,2,4异构体
分子式:
CAS号:

性质:又称顺-反式异构体(cistrans isomer),1,2,4异构体或1,2,6异构体(1,2,4 isomer;1,2,6 isomer)。八面体配位化合物中,六个配体分别为3个A(如图中Cl:A1,A2,A3)和3个B(如图中Py:B1,B2,B3)(图暂缺)。当三个相同的配体中的两个(如A1与A3或B1与B3)互为反式,第三个(如A2或B2)与这两个A1与A3或B1与B3)均为顺式,这样的排布的异构体即为经式异构体。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。