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首页> 外文期刊>Macromolecules >Beads on a chain (BOC) polymers formed from the reaction of NH _2PhSiO_(1.5)]_x[PhSiO_(1.5)] _(10-x) and [NH_2PhSiO_(1.5)]_x[PhSiO _(1.5)]_(12-x) mixtures (x = 2-4) with the diglycidyl ether of bisphenol A
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Beads on a chain (BOC) polymers formed from the reaction of NH _2PhSiO_(1.5)]_x[PhSiO_(1.5)] _(10-x) and [NH_2PhSiO_(1.5)]_x[PhSiO _(1.5)]_(12-x) mixtures (x = 2-4) with the diglycidyl ether of bisphenol A

机译:由NH _2PhSiO_(1.5)] _ x [PhSiO_(1.5)] _(10-x)和[NH_2PhSiO_(1.5)] _ x [PhSiO _((1.5)] _(12)反应形成的链(BOC)聚合物上的珠-x)与双酚A的二缩水甘油醚的混合物(x = 2-4)

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摘要

We recently reported that catalytic amounts of F- cause rapid rearrangement of silsesquioxane (SQ) T_8 cages in THF at room temperature. These rearrangements lead primarily to the T_(10) and T_(12) cages as long as the F- is trapped for example using CaCl2 to form insoluble CaF_2 in situ. In this report, we use this approach to make di- and triaminophenyl, phenyl silsesquioxane T _(10) and T_(12)mixtures: (NH_2Ph)_(2x)Ph_(10/12-x)(SiO_(1.5))_(10/12). Thereafter, we isolate the fraction that consists primarily of x = 2-3 via column chromatography. We then explore the reaction of this fraction (fraction 3) with the diglycidyl ether of bisphenol A (DGEBA) to form a soluble epoxy resin wherein the cage SQs are contained in the chain backbone. We call these products beads on a chain (BoC) polymers. The use of 1:1 mole ratios of [epoxide]:[NH_2Ph] of DGEBA and (NH_2Ph)_(2x)Ph _(10)/_(12-x)(SiO_(1.5))_(10/12) leads to insoluble products. However, the reaction of 0.8:1 mole ratio of [epoxide]:[NH 2Ph] provides a soluble but bimodal distribution of products (after 24 h reaction at 90 °C in THF). The low MW component is much more soluble in THF than the higher MW component, allowing simple separation. The low MW polymer has a Mn of 6000 Da with a PDI of 1.6. The higher MW material has an Mn of 21 000 000 Da with a PDI of 21. Both components offer similar ceramic yields (to SiO_2) of 32 ± 1%, indicating that the relative contents of cages are identical. They also exhibit very similar FTIR spectra, suggesting that they are the same material. Two explanations are possible for the bimodal size distribution. One is that the positioning of the NH2 groups on the cage leads to cyclic trimers given that the average monomer unit will mass ≈1700-1900 Da, which represents the low MW fraction. Alternately and more likely, the higher molecular weight component consists of di- and triamino functionalities such that in the growing chain, once the first two amine groups on the cage react, the third group is likely sterically protected. Thus, only late in the reaction will the quantities of the third group exceed those of the diamino components, allowing a slow tertiary functionalization and likely some degree of cross-linking (or internal cyclization) to occur. That this happens is suggested by the much poorer solubility of the higher MW materials as well as the very large PDI. These studies serve as a model for other possible studies targeting BoC polymers.
机译:我们最近报道,在室温下,催化量的F-导致倍半硅氧烷(SQ)T_8笼在THF中快速重排。这些重排主要导致T_(10)和T_(12)笼子,只要例如使用CaCl2捕获F-以原位形成不溶性CaF_2。在本报告中,我们使用此方法制备二氨基和三氨基苯基,苯基倍半硅氧烷T _(10)和T_(12)混合物:(NH_2Ph)_(2x)Ph_(10 / 12-x)(SiO_(1.5)) _(10/12)。此后,我们通过柱色谱分离出主要由x = 2-3组成的级分。然后,我们探索该级分(级分3)与双酚A的二缩水甘油醚(DGEBA)的反应,以形成可溶性环氧树脂,其中笼状SQ包含在链主链中。我们称这些产品为链(BoC)聚合物上的珠。 DGEBA的[环氧化物]:[NH_2Ph]与(NH_2Ph)_(2x)Ph _(10)/ _(12-x)(SiO_(1.5))_(10/12)1:1摩尔比的使用导致不溶的产品。但是,[环氧化物]:[NH 2Ph]摩尔比为0.8:1的反应提供了可溶但双峰分布的产物(在90°C下于THF中反应24小时后)。与较高的MW组分相比,低分子量的组分在THF中的溶解度要高得多,从而可以进行简单分离。低分子量聚合物的Mn为6000 Da,PDI为1.6。较高分子量的材料的Mn为21000000 Da,PDI为21。两种组分的陶瓷产率(对SiO_2)相似,均为32±1%,表明笼的相对含量相同。它们还表现出非常相似的FTIR光谱,表明它们是相同的材料。双峰大小分布可能有两种解释。一个是,考虑到平均单体单元的质量≈1700-1900Da,这表示低MW分数,因此NH2基团在笼子上的定位会导致三聚体的循环。或者,更高分子量的组分由二氨基和三氨基官能团组成,这样在增长的链中,一旦笼子上的前两个胺基发生反应,就可能在空间上保护第三个基团。因此,仅在反应的后期,第三组的量将超过二氨基组分的量,从而允许缓慢的叔官能化并可能发生某种程度的交联(或内部环化)。较高分子量材料的溶解性差得多,而且PDI很大,表明发生了这种情况。这些研究可作为针对BoC聚合物的其他可能研究的模型。

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