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Compartmentalization-induced phosphorescent emission enhancement and triplet energy transfer in aqueous medium

机译:在水介质中隔室诱导的磷光发射增强和三重态能量转移

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摘要

Triplet energy transfer occurs frequently in natural photosynthetic organisms to protect against photo-oxidative stress. For artificial light-harvesting systems, several challenges need to be addressed to realize triplet energy transfer especially in aqueous medium. Specifically, the phosphors should be shielded from water and molecular oxygen, which facilitate to maintain intense emission intensity. Moreover, the donor‒acceptor phosphors should be organized in close proximity, yet simultaneously avoiding direct homo- and hetero-interactions to minimize the potential energy losses. Herein an effective strategy has been developed to meet these requirements, by employing a rod−coil amphiphile as the compartmentalized agent. It renders synergistic rigidifying and hydrophobic shielding effects, giving rise to enhanced phosphorescent emission of the platinum(II) complexes in aqueous environment. More importantly, the donor‒acceptor platinum(II) phosphors feature ordered spatial organization in the ternary co-assembled system, resulting in high light-harvesting efficiency. Therefore, the compartmentalization strategy represents an efficient approach toward color-tunable phosphorescent nanomaterials.
机译:三重态能量转移经常发生在自然光合生物中,以防止光氧化应激。对于人造光收集系统,要实现三重态能量传递,尤其是在水性介质中,需要解决几个挑战。具体而言,磷光体应与水和分子氧隔绝,以利于保持强烈的发射强度。此外,施主-受主磷光体应紧密排列,同时避免直接的均质和异质相互作用,以将潜在的能量损失降至最低。在这里,已经开发出一种有效的策略来满足这些要求,方法是使用棒螺旋两亲物作为分隔剂。它具有协同的硬化作用和疏水性屏蔽作用,从而增强了水性环境中铂(II)配合物的磷光发射。更重要的是,供体受体铂(II)荧光粉在三元共组装系统中具有有序的空间组织,从而具有很高的光收集效率。因此,分隔策略代表了一种针对颜色可调的磷光纳米材料的有效方法。

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