Department of Chemistry and Biochemistry, The University of Texas, Austin, Texas 78712, USA.
J Am Chem Soc. 2011 May 11;133(18):7180-9. doi: 10.1021/ja201135y. Epub 2011 Apr 19.
Poly(methyl acrylate)s (PMAs) of varying molecular weights were grown from a [4+2] cycloaddition adduct of maleimide with furan containing two polymerization initiators. Subjecting the corresponding PMA (>30 kDa) chains to ultrasound at 0 °C resulted in a retro [4+2] cycloaddition reaction, as observed by gel permeation chromatography (GPC) and UV-vis spectroscopy, as well as labeling of the liberated maleimide and furan moieties with appropriate chromophores featuring complementary functional groups. Similar results were obtained by sonicating analogous polymers that were grown from a thermally robust [4+2] cycloaddition adduct of maleimide with anthracene. The generation of anthracenyl species from these latter adducts allowed for the rate of the corresponding mechanically activated retro [4+2] cycloaddition reaction to be measured. No reduction in the number average molecular weight (M(n)) or liberation of the maleimide, furan, or anthracene moieties was observed (i) for polymers containing the cycloaddition adducts with M(n) < 20 kDa, (ii) for high molecular weight PMAs (M(n) > 60 kDa) featuring terminal cycloaddition adducts, or (iii) when the cycloaddition adducts were not covalently linked to a high molecular weight PMA. Collectively, these results support the notion that the aforementioned retro [4+2] cycloaddition processes were derived from a vectorially opposed mechanical force applied to adducts embedded within the polymer chains.
聚甲基丙烯酸酯(PMAs)的分子量不同,是由马来酰亚胺与呋喃的[4+2]环加成加合物与两种聚合引发剂生长而成。将相应的 PMA(>30 kDa)链在 0°C 下进行超声处理,导致反[4+2]环加成反应,如凝胶渗透色谱(GPC)和紫外可见光谱以及释放的马来酰亚胺和呋喃部分的标记所观察到的,用具有互补官能团的适当生色团标记。通过超声类似的聚合物也得到了类似的结果,这些聚合物是由马来酰亚胺与蒽的热稳定[4+2]环加成加合物生长而成。从这些后加成物中生成的蒽基物质允许测量相应的机械激活反[4+2]环加成反应的速率。在以下情况下,未观察到数均分子量(M(n))的降低或马来酰亚胺,呋喃或蒽部分的释放:(i)包含加合物的 M(n)<20 kDa的聚合物,(ii)具有末端加合物的高分子量 PMAs(M(n)> 60 kDa),或(iii)当加合物未与高分子量 PMA 共价连接时。这些结果共同支持了这样的观点,即上述反[4+2]环加成过程源自嵌入聚合物链中的加合物所施加的向量相反的机械力。