Feng Xiaoshuang, Taton Daniel, Ibarboure Emmanuel, Chaikof Elliot L, Gnanou Yves
Laboratoire de Chimie des Polymeres Organiques, Université Bordeaux 1, ENSCPB 16, Avenue Pey Berland, 33607 Pessac cedex, France.
J Am Chem Soc. 2008 Sep 3;130(35):11662-76. doi: 10.1021/ja7103119. Epub 2008 Aug 6.
A straightforward and original methodology allowing the synthesis of Janus-type dendrimer-like poly(ethylene oxide)s (PEOs) carrying orthogonal functional groups on their surface is described. The use of 3-allyloxy-1,2-propanediol (1) as a latent AB2-type heterofunctional initiator of anionic ring-opening polymerization (AROP) of ethylene oxide (EO) and of selective branching agents of PEO chain ends served to construct the two dendrons of these dendrimer-like PEOs, following a divergent pathway. Thus, the first PEO generation of the first dendron was grown by AROP from 1 followed by the reaction of the corresponding alpha-allyl,omega,omega'-bishydroxy- heterofunctional PEO derivative with 2-(3'-chloromethybenzyloxymethyl)-2-methyl-5,5-dimethyl-1,3-dioxane (2) used as a branching agent. This afforded the dendron A with four latent peripheral hydroxyls protected in the form of two ketal rings. The remaining alpha-allylic double bond of the PEO thus prepared was transformed into two hydroxyl groups using OsO4 in order to create the first PEO generation of the dendron B by AROP of EO. Allyl chloride (3) was then used as another (latent) branching agent to react with the terminal hydroxyl of the corresponding PEO chains. Deprotection under acidic conditions of the ketal groups of dendron A, followed by AROP of EO, afforded the second PEO generation on this face. This alternate and divergent procedure, combining AROP of EO and selective branching of PEO branches, could be readily iterated, one dendron after the other up to the generation six, leading to a Janus-type dendrimer-like PEO exhibiting a total mass of around 300 kg/mol and possessing 64 peripheral groups on each face. The possibility of orthogonal functionalization of the surfaces of such Janus-type dendritic PEOs was exploited. Indeed, a dendron of generation 4 was functionalized with hydroxyl functions at its periphery, whereas the other was end-capped with either tertiary amino or disulfide groups. In a variant of this strategy, azido groups and acetylene could also be orthogonally introduced at the periphery of the fourth generation Janus-type dendrimer-like PEO and subjected to polycondensation by a 1,3-dipolar cycloaddition reaction. This afforded a necklace-like covalent assembly of dendrimer-like PEOs through the formation of stable [1,2,3]-triazole linkages.
本文描述了一种直接且新颖的方法,可用于合成表面带有正交官能团的类树枝状聚环氧乙烷(PEO)。使用3-烯丙氧基-1,2-丙二醇(1)作为环氧乙烷(EO)阴离子开环聚合(AROP)的潜在AB2型异官能引发剂,并利用PEO链端的选择性支化剂,按照发散法构建这些类树枝状PEO的两个树枝状支链。因此,第一个树枝状支链的第一代PEO通过AROP从1开始生长,随后相应的α-烯丙基、ω,ω'-双羟基异官能PEO衍生物与用作支化剂的2-(3'-氯甲基苄氧基甲基)-2-甲基-5,5-二甲基-1,3-二氧六环(2)反应。这得到了带有四个以两个缩酮环形式保护的潜在外围羟基的树枝状支链A。使用OsO4将由此制备的PEO剩余的α-烯丙基双键转化为两个羟基,以便通过EO的AROP生成树枝状支链B的第一代PEO。然后使用烯丙基氯(3)作为另一种(潜在)支化剂与相应PEO链的末端羟基反应。在酸性条件下对树枝状支链A的缩酮基团进行脱保护,随后进行EO的AROP,在该面上得到第二代PEO。这种交替且发散的过程,结合EO的AROP和PEO支链的选择性支化,可以很容易地重复进行,一个树枝状支链接一个树枝状支链,直至第六代,得到一种类树枝状Janus型PEO,其总质量约为300 kg/mol,每一面都有64个外围基团。利用了这种Janus型树枝状PEO表面进行正交官能化的可能性。实际上,第四代树枝状支链在其外围用羟基官能团进行了官能化,而另一个则用叔氨基或二硫键封端。在该策略的一个变体中,叠氮基和乙炔也可以正交引入到第四代Janus型类树枝状PEO的外围,并通过1,3-偶极环加成反应进行缩聚。通过形成稳定的[1,2,3]-三唑键,得到了类树枝状PEO的项链状共价组装体。