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1)  fullerenols
多羟基富勒醇
1.
In this paper, fullerenols was used as an artificial sweet taste chemoreceptor model, and isothermal titration calorimetry (ITC) was a tool to examine the thermodynamic action of interactions between fullerenols and sweeteners for a pilot study on the molecular recognition of sweet taste.
本文以多羟基富勒醇作为人工甜味化学受体的实验模型,以等温滴定微量热仪(ITC)为实验研究手段,通过对多羟基富勒醇与甜味剂相互作用过程的热力学行为,对甜味的分子识别进行初步研究。
2.
In this paper,we used fullerenols as artificial sweet taste chemoreceptor,via determined fluorescence kinetics and thermodynamic parameters of the interaction between fullerenols and typical sweeteners, correlated these parameters with the sweeteners\' sensory sweetness,and established an artificial sweet taste chemoreceptor model which is feasible to have a research.
本文以合成的多羟基富勒醇作为人工化学甜味受体,通过测定多羟基富勒醇与典型甜味剂之间相互作用的荧光动力学和热力学参数,并将其与甜味剂感官甜度进行相关性研究,以确立人工甜味化学受体可行的实验研究模型。
3.
C60 fullerenols was synthesized by the reaction of fullerene with NaOH solution in the presence of tetrabutylammonium hydroxide(TBAH).
利用四丁基氢氧化铵催化法合成了多羟基富勒醇,通过三维荧光光谱结合透射电镜和动态光散射方法,考察了富勒醇水溶液自聚集行为的机理。
2)  polyhydric alcohols
多羟基醇
1.
Liquefaction of wood by using phenol or polyhydric alcohols.;
木材的苯酚及多羟基醇液化
3)  [60] polynitrofullerene
多硝基[60]富勒烯
1.
The C-N bond dissociation energies,averaged C-N bond dissociation energies and averag nitryl binding energies of fourteen kinds of [60] polynitrofullerenes were calculated with the PBE density functional theory method.
用PBE密度泛函方法计算了14种多硝基[60]富勒烯的最弱C-N键离解能、C-N键平均键离解能以及硝基的平均结合能。
4)  fullerenols
富勒醇
1.
Biological and Biomedical Applications of Fullerene and Fullerenols;
富勒烯和富勒醇的生物学和生物医学应用研究
2.
ObjectiveTo investigate the inhibitive effect of fullerenols on the growth of transplanted hepatocarcinoma in mice.
目的研究富勒醇对小鼠移植性肝癌生长的抑制作用。
3.
The method of activating hydroxyls of fullerenols using 2-fluoro-l-methylpyridinium p-tolu- ene sulphonate (FMP) to covalently linking with bovine serum albumin (BSA) and further its effect on BSA was studied.
考察了2-氟-1-甲基吡啶对甲苯磺酸盐(FMP)对富勒醇羟基的活化方法,以便将富勒醇通过共价交联的方法与牛血清白蛋白(BSA)连接,进而研究富勒醇修饰对BSA所造成的影响。
5)  fullerols
富勒醇
1.
Fluorescence Properties of Water-soluble Fullerols and Interaction with Various Metallic Ions;
水溶性富勒醇的荧光特性及其与各种金属离子结合的研究
2.
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.
5× 10 -5mol·L-1时 ,出现一个最大值 ,表明富勒醇存在浓度自吸收现
3.
Fullerols were electrostatically self assembled into composite thin films with the precursor of poly( p phenylene vinylene)(PPV)and with poly(diallyldimethylammonium chloride)(PDDA).
采用静电自组装技术制备了富勒醇与聚对亚苯亚乙烯基 (PPV)的前驱体、聚二烯丙基二甲基氯化铵(PDDA)的复合薄膜 ,利用紫外 可见光吸收光谱 (UV Vis)、原子力显微镜 (AFM )、透射电镜 (TEM)和X射线光电子能谱 (XPS)对薄膜进行了表征 。
6)  fullerenol
富勒醇
1.
An ESR Study on OH-radical Scavenging Activity of Water-soluble Fullerenols;
富勒醇清除·OH自由基的ESR研究
2.
Results Fullerenol showed significant radioprective effect on irradiated mice including increasing the weight of mice,protecting norm.
目的 研究C6 0 衍生物富勒醇对6 0 Coγ射线损伤的防护和恢复治疗作用及机制。
3.
In this paper, multiwalled carbon nanotubes(MWCNTS)/poly-hydroxylated fullerenes(fullerenols) composites were prepared through facile methods.
首先采用强酸氧化处理多壁碳纳米管使其表面产生羟基和羧基等官能基团,再分别用聚丙烯酰氯和六亚甲基二异氰酸酯对多壁碳纳米管进行修饰,从而将活性官能团引到碳纳米管表面,最后利用多羟基富勒烯衍生物-富勒醇表面的羟基与碳纳米管表面官能团之间的反应制备出富勒烯/碳纳米管杂化材料。
补充资料:羟基香茅醇
CAS: 107-74-4
分子式: C10H22O2
分子质量: 174.28
中文名称: 3,7-二甲基-1,7-辛二醇;羟基香茅醇

英文名称: 7-Octanediol, 3,7-dimethyl-1;3,7-dimethyl-7-octanediol;3,7-dimethyl-7-hydroxy-1-octano;3,7-dimethyl-1,7-octanediol;7-hydroxy-3,7-dimethyloctan-1-ol;hydroxy-citronello;hydroxycitronellol;3,7-dimethyloctane-1,7-diol
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