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Double-helical ultrastructure of polycationic dendronized polymers determined by single-particle cryo-TEM

机译:单粒子低温TEM测定聚阳离子树状聚合物的双螺旋超微结构

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摘要

The ultrastructure of cationic dendronized polymers (denpols) of third and fourth generations (PG3 and PG4) in water was determined by using single-particle cryo-transmission electron microscopy (cryo-TEM). At concentrations in the region of 50 mgL(-1), networks of double-stranded fibers were revealed that exhibit well-defined diameters of 5.9 nm ± 0.4 nm for PG3 and 7.4 nm ± 0.4 nm for PG4. The structure varies with progression along the fibers, and includes a double helix with a pitch of 7.0 ± 0.4 nm for PG3 and 9.0 ± 0.4 nm for PG4. The formation of the double strands is attributed to the hydrophobic effect and limited crowding in the dendron shell of the third and fourth generation denpols investigated. From solutions of lower concentrations (around 10 mg L-1), isolated molecular fibers were adsorbed onto high-energy surfaces and examined by performing scanning force microscopy (SFM) on mica, and after staining, TEM on glow-discharged carbon films. In both cases, characteristic undulations of single strands were observed, which are attributed largely to the adsorption process.
机译:使用单粒子低温透射电子显微镜(cryo-TEM)测定了第三代和第四代(PG3和PG4)的阳离子树突化聚合物(denpols)的超微结构。在浓度范围为50 mgL(-1)时,显示出双股纤维网络,其直径定义明确,为5.9 nm± PG3为0.4 nm,PLUSMN为7.4 nm; PG4为0.4 nm。结构随纤维的变化而变化,并包括节距为7.0&PLUSMN的双螺旋。 PG3和9.0&PLUSMN为0.4 nm; PG4为0.4 nm。双链的形成归因于所研究的第三和第四代树突的树突壳中的疏水作用和有限的拥挤。从较低浓度(约10 mg L-1)的溶液中,分离出的分子纤维被吸附到高能表面上,并通过在云母上进行扫描力显微镜(SFM)进行检查,染色后,在辉光放电的碳膜上进行TEM。在两种情况下,均观察到单链的特征性起伏,这在很大程度上归因于吸附过程。

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