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1)  fulvene ['fulvi:n]
富烯
1.
Study of stereochemistry of reaction of 6,6 polymethylenefulvene with 1 lithiocycloalkenes;
环烯基锂与 6,6-n 亚甲基富烯反应立体化学研究
2.
Synthesis of 6 Hydroxy Fulvenes and Cyclopentaoxazines;
6-羟基富烯及环戊二烯并[d][1,2]嗪的合成
3.
Synthesis of 1-Aroyl-3-alkyl-6-hydroxy-6-aryl Fulvenes;
1-芳酰基-3-烷基-6-羟基-6-芳基富烯的合成
2)  fullerenes
富勒烯
1.
Preparation of Pyrenebutyric Acid-modified Zirconia-Magnesia Stationary Phase for High Performance Liquid Chromatography and Its Application to the Separation of Fullerenes;
芘基丁酸改性锆-镁复合氧化物HPLC固定相的制备及其在分离富勒烯中的应用
2.
Copolymerization of butadiene and isoprene initiated with fullerenes based neodymium catalyst;
富勒烯-钕系催化剂引发丁二烯-异戊二烯共聚合
3)  fullerene [英]['fuləri:n]  [美]['fʊlə,rin]
富勒烯
1.
Semi-empirical quantum-chemical analyses of C_(120) isomeric fullerenes;
C_(120)异构富勒烯分子的AM1半经验量子化学研究
2.
Study on Ultra-smooth Surface Created by Diamond and Fullerene Abrasive Tools with Superfine Grains;
超微粒金刚石和富勒烯研具创建超平滑表面的研究
3.
Progress of the Research on Polythiophenes and Thiophene Oligomers with Side Chains Containing Fullerene and their Photovoltaic Cells;
支链带有富勒烯的聚噻吩和齐聚噻吩及其光伏电池研究进展
4)  fullerene chain
富勒烯链
5)  fullerence
富勒烯
1.
A convenient method was introduced to synthesize a water-soluble fullerence derivative-fullerols by the reaction of fullerence with fuming H 2SO 4 and KNO 3.
介绍了合成多羟基富勒烯衍生物C60 / 70 (OH) x 的简便方法 ,采用FT IR ,1HNMR ,RF对其结构进行了表征 ,初步讨论了其溶解性及荧光效应 。
2.
The o ptical limiting of nanocompostie based on Fullerence was studied using double fr equency Nd∶YAG pulse laser system with wave length of 532nm,pulse width of 8ns and repetition rate of 10Hz.
应用倍频Nd:YAG脉冲激光,在波长为532nm,脉宽8ns,重复频率10Hz的条件下,研究了新型基于富勒烯纳米结构材料(C_60-bpy-Au)的光限幅特性。
6)  benzofulvene
苯并富烯
1.
Three new ferrocenylmethyl-substituted indenes and cyclopentadienes were synthesized by the addition of hydrogen anion and carbon anion to fulvene and benzofulvene respectively, moreover, their structures were characterized by NMR and MS.
本文以二茂铁基富烯和二茂铁基苯并富烯为前体,通过负氢和负碳对双键的加成,合成了3个新型的二茂铁基甲基取代的茚及环戊二烯,并对其结构进行了核磁及质谱表征。
补充资料:富烯
分子式:
CAS号:

性质: 黄色油状。室温下易聚合。沸点7~8℃(7.448kPa)。折射率nD201.4920。可溶于苯。剧毒。是苯的同分异构体,但共振能很小,不是芳香族化合物。性质活泼,能像烯烃一样发生反应。环外双键碳上的氢原子被烃基取代时,双键有较大的极性。由苯蒸气光解制得,或苯在液相光解制得(184.9nm)。

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