1)fullerene[英]['ful?ri:n][美]['f?l?,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
英文短句/例句
1.The Study of Yb-Metallofullerenes and Anomalous Fullerenes;Yb金属富勒烯包合物及特殊结构富勒烯的研究
2.Like their smaller counterparts from the Sudbury crater, these larger structures contained extraterrestrial helium, neon and argon.这些大型富勒烯与索德柏立的富勒烯一样,都藏有源自太空的氦、、。
3.Research in Chemistry Open-cage of the Fullerenes and Preparation of Open-cage Fullerenes Derivatives;富勒烯的化学开笼研究及开笼富勒烯衍生物的制备
4.Studies of Fluorescence of Fullerene and Photoelectric Properties of Fullerene Modified Blm;富勒烯的荧光及富勒烯修饰的双层类脂膜光电特性研究
5.Fossil-Fullerene and Archaeology: Studies Concerning the C_(60) in Fossil Dinosaur Eggs;化石富勒烯与考古学——关于恐龙蛋化石中的富勒烯研究
6.The Theoretical Study on Structures and Stabilities of Derivatives of Smaller Fullerenes and Quasi-Fullerenes小富勒烯和准富勒烯衍生物的结构和稳定性的理论研究
7.Study on the Endohedral NMR and [2+3] Reaction Mecahnisms of Fullerenes内嵌富勒烯化学位移和富勒烯[2+3]反应机理的理论研究
8.We, too, were surprised that the fullerenes survived.我们也很惊讶富勒烯居然存留下来。
9.Purification of Onion Like Fullerenes and XRD Structural Refinement;洋葱状富勒烯的提纯及XRD结构精修
10.Functional Material of Fullerene with UV Optical Property;具有紫外光学性能的富勒烯功能材料
11.The Studies on Onion-Like Fullerenes Prepared by Arc Discharge Method;电弧放电法制备洋葱状富勒烯的研究
12.Endohedral Metallofullerenes and Metallo-Carbohedrenes: A DFT Investigation;内包金属富勒烯和金属碳笼的DFT计算
13.Study on DNA Damage Mechanism and Toxicity Effects of Fullerene;富勒烯的DNA损伤机制及毒性效应研究
14.Synthesis、Separation and Property Research of Fullerene Derivatives;富勒烯衍生物的合成、分离与性质研究
15.Study on the Synthesis and Property of Energetic Fullerene Derivatives;含能富勒烯衍生物的合成与性能研究
16.Synthesis of Gd-metallofullerenes and MS Characterization;Gd-富勒烯包合物合成提取及质谱表征
17.Structure,Properties and Application of Fullerene C_(60);富勒烯——C_(60)的结构、性质及应用
18.On the Discovery and Property Research of Fullerene C_(60),C_(70);富勒烯C_(60),C_(70)的发现与研究
相关短句/例句
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)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。
4)fullerene chain富勒烯链
5)C_(60) fullereneC60富勒烯
1.By using MD(molecular dynamics) method,the collision and energy-transmission of C_(60) fullerenes in Ar doped nano-peapod was simulated,and the effect of the doped-Ar density ρ and the initial energy E_0 of the incident C_(60) fullerene on the energy-transmission rate was analyzed.以C60富勒烯之间掺杂有不同浓度Ar原子的碳纳米豆荚为研究对象,采用分子动力学方法,模拟了纳米豆荚中C60富勒烯之间的碰撞与能量传递,分析了入射C60富勒烯初始能量、Ar掺杂浓度对能量传递率的影响。
6)fullerene[英]['ful?ri:n][美]['f?l?,rin]富勒烯[60]
1.Photochemistry of [60] Fullerene;富勒烯[60]的光化学反应研究
2.Characterization of the charge transfer complexes of fullerene have been studied by nanosecond laser photolysis.通过毫微秒激光光解作用研究了富勒烯[60]电荷转移络合物的特性。
延伸阅读
富勒烯富勒烯Fullerene,FulleriteC60和C70的混合物。一类崭新的碳素多面体原子簇,其结构如图所示。人们很早就观察到宇宙星际间碳原子簇的存在,但对其化学键的性质及其结构却一直不太清楚。1984年科学家利用激光汽化-氦脉冲膨胀法得到的碳原子簇可达180个碳原子。1990年法国物理学家和美国物理学家宣布成功并能常量的制备和分离出C60和C70。这一结果轰动了物理及化学界。各国的科学家,包括中国的科学家投入了这一崭新的研究领域。这类碳原子簇被认为是金刚石、石墨石的第三碳素形态。1985年英国科学家就提出了这类原子簇是一种封闭而中空的稠环芳香碳素体。C60具有球形削角20面体结构,这一结构包括20个六边形及12个五边形相互连接构成。60个碳原子处于各顶角。1990年成功地分离了C60及C70。图片