dendrimer
n. 聚合物;树形分子;人造分子
2025-09-06 22:55 浏览次数 6
n. 聚合物;树形分子;人造分子
Polyamidoamine dendrimer树形高分子
Polyphenylene dendrimer树形聚苯
Spiro dendrimer螺环树枝状化合物
PAMAM dendrimerPAMAM树形分子
polypropyleneimine dendrimer聚丙烯亚胺树状告分子
3DNA dendrimerDNA树状体
metal dendrimer金属树状高分子
cationic polymer阳离子聚合物,聚合物
Phenylacetylene Dendrimer树枝状聚苯乙炔
dendrimer aggregation树枝状分子聚集体
chapter 1 begins with a summary on dendrimer and its applications in biomedicine especially pamam dendrimers.
第一章对树枝形分子及其在生物医学中的应用进行了概述,尤其是对pamam树枝形分子。
however, dendrimer catalysts are not easily synthesized and rare earth lewis acid catalysts are easily deliquescence.
然而,树状大分子合成难度大,稀土催化剂也存在易潮解之不足。
starting from a core molecule possessing alkenyl groups and repeating the hydrosilylation step and alkenylation step, a carbosilane dendrimer with si-atoms as branching pointing was obtained.
从一个含有烯基的中心核分子开始,重复进行硅氢化作用和烯基化作用的过程可以获得以硅原子作为支化点的碳硅烷树形分子。
the observation results with transmission electronic microscopy showed that the composition of dendrimer vector and dna caused shrink of dna structure.
透射电镜测试结果表明,树枝状高分子载体与dna的复合导致dna结构收缩,粒径减小,分布均匀。
this paper mainly studied the preparation of polyamidoamine (pamam) dendrimer and the application in dyeing industry.
本课题主要研究了聚酰胺-胺(pamam)树状大分子的制备及其在染整工业中的应用。
the demulsification influence of synthetical dendrimer pamam on the oil-drop liquid film was studied by the single-drop method, and its demulsification mechanism was analyzed.
应用单滴法考察了合成的树状高分子聚酰胺-胺对油滴液膜的破乳效果,并分析了其破乳机理。
objective to study the application of dendrimer dna hybridization (ddh) technology in hev detection.
目的研究树状dna杂交(ddh)技术在戊型肝炎病毒(hev)检测中的应用。
dendrimer is a new kind of polymerized molecule, which is highly symmetrical, monodisperse and outstanding mechanical property.
树状聚合物具有单分散、对称性高、机械性能好的特性,是一种用途广泛的新型材料。
the properties of this kind of dendrimer as demulsifier for the simulated o/w crude oil emulsion have been investigated emphatically.
接下来又重点研究了这类树枝形高分子聚合物的对o/w型的模拟原油乳液的破乳性能。
in chapter 3 we report the encapsulation efficiency of a pamam dendrimer employing antileukemic drug 6-mercaptopurine.
第三章我们报到了pamam树枝形分子负载抗白血病药物6-巯基嘌呤的包裹效率。
this dendrimer worked as a drug carrier with thermosensitive release capabilities, although it did not exhibit a lower critical solution temperature.
这树枝状担任药物载体的热敏释放的能力,尽管它不具有更低的临界溶解温度。
compared with physically cross-linked pva hydrogel, pva/pamam dendrimer hydrogels show higher swelling ratios and faster reswelling rate.
相同组成的pva/聚酰胺-胺树形高分子物理交联水凝胶的溶胀率和再溶胀速率随着冻融次数的增加而降低。
the invention relates to a chemical sensor comprising a sensor film formed of a nanoparticle network in which the nanoparticles are interlinked by functionalized dendrimer molecules.
本发明涉及一种化学传感器,它含有由纳米颗粒网状物形成的传感器膜,其中该纳米颗粒由官能化的枝晶体分子键接。
three branched monomers 1 ~ 3, possessing 3 - fold symmetry and branches emanating from a tetrahedral carbon branch point, were utilized as the key building block in the dendrimer syntheses.
目标化合物以甘油、硝基甲烷为三方向起始核心,以从季碳原子三倍对称分散的化合物1~3为分支侧链。
polyamidoamine ( pamam) g4. 0 dendrimer was used as additives to nylon 6. the influence of different quantity of pamam on the tensile strength, impact property and mfr of nylon 6 were investigated.
研究4.0代树枝形聚酰胺胺(pamam)对尼龙6拉伸性能、沖击性能及熔体流动速率的影响。
dendrimer size increases linearly and the number of surface functional groups increases exponentially with generation number.
树枝状大分子的大小呈线性增长,而外层功能化基团呈级数增长。
the dialectics in preparing the dendrimer modified nanomagnetic fluid was discussed. it was considered that preparing the dendrimer modified nanomagnetic fluid is a system engineering.
根据辩证思维的原理讨论了树形高分子改性纳米磁流体的制备,认为树形高分子改性纳米磁流体的制备是一项系统工程;
peptide dendrimer is a kind of dendrimer that contain peptidyl bond or is grafted with peptide on the surface. it has been widely used in biotechnology and biochemistry.
肽树枝状化合物是一类含有肽键或表面接枝肽的树枝状化合物,在生物技术及生物化学领域具有广泛的应用。
to combat toxins that don't have a lipid membrane, a synthetic cell called a dendrimer can be mixed into the antidote.
为了抵抗没有类脂膜的毒素,可以把一种叫树状物的合成细胞混合进解毒剂里。
the topological structure of the dendrimer spacer arms was inspected by solid-state 13c nmr.
用13c固体核磁共振检测了树状间隔臂的拓扑结构。
dendrimer of two branch core, three branch core, four branch core, six branch core, with original structure, have been reported in the literature.
文献报道的有两方向引发核、三方向引发核、四方向引发核、六方向引发核等结构新颖的树枝状分子。