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Controlling Chain Coupling and Single-Chain Ligation by Two Colours of Visible Light

机译:通过两种可见光控制链耦合和单链结扎

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摘要

While photochemical synthesis offers access to spatiotemporal reaction control, its potential to selectively address specific reactions by the colour of light is usually limited by ubiquitous spectral absorption overlaps of the reactive groups. Herein, a new concept is introduced that actively suppresses one ligation reaction by triggering the cycloreversion of the [2+2] cycloaddition of styrylpyrene. Combination of the photoreversible styrylpyrene chemistry with the [4+4] cycloaddition of 9-triazolylanthracene makes it possible to initially induce chain coupling using UV light and to subsequently ligate the formed single-chain nanoparticle (SCNP) with a second polymer chain using blue light. Seizing upon the first sequence-independent lambda-orthogonal reactivity established here, the same macromolecular architecture was obtained in reverse irradiation sequence, by blue and subsequent violet light irradiation-completely foregoing high-energy UV light.
机译:虽然光化学合成提供了对不良反应控制的进入,但其潜力可以通过光颜色选择性地解决特定反应,通常受反应性基团的无处不在的光谱吸收重叠的限制。 在此,引入了一种新概念,其通过触发STYRYL丙烯的[2 + 2]环加成的环荷转化来主动抑制一种连接反应。 用[4 + 4]环加成的9-三唑泊蒽酸乙烯化学的组合使得可以使用UV光最初诱导链偶联,并随后使用蓝光用第二聚合物链将所形成的单链纳米颗粒(SCNP)连接 。 在此确定的第一序列无关的λ-正交反应性,在反向照射序列中获得相同的大分子架构,通过蓝色和随后的紫光照射 - 完全前面的高能量UV光。

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