Beijing Engineering Research Center of Process Pollution Control, Division of Environment Technology and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Macromol Rapid Commun. 2018 Jul;39(13):e1800152. doi: 10.1002/marc.201800152. Epub 2018 May 17.
Amphiphilic nanoreactors have been recently used to fabricate photoluminescent carbon-rich polymer nanodots (PCPNs). However, the applications of PCPNs have been limited by their requirements for high temperature and toxic organic solvents or catalysts and the difficult control of their luminescent properties. Herein, a novel and facile strategy is reported for the synthesis of controllable PCPNs. This strategy involves the use of in situ vesicular nanoreactors under mild photoirradiation with fatty acid as the precursor. The conjugation degree of the uniformly sized PCPNs can be increased by extending photoreaction time, thus enabling the tuning of the optical properties of PCPNs. The PCPNs, which feature controllable and outstanding luminescent properties, low cytotoxicity, and biocompatibility, are successfully applied in bioimaging and as fluorescent ink. The present strategy is an attractive and facile platform for the preparation of carbon-rich nanomaterials with controllable photoluminescence.
两亲性纳米反应器最近被用于制备发磷光的富碳聚合物纳米点(PCPNs)。然而,PCPNs 的应用受到高温和有毒有机溶剂或催化剂的要求以及对其发光性能的难以控制的限制。在此,报道了一种用于合成可控 PCPNs 的新颖且简便的策略。该策略涉及在脂肪酸作为前体的温和光照射下使用原位囊泡纳米反应器。通过延长光反应时间,可以增加均匀尺寸的 PCPNs 的键合度,从而可以调节 PCPNs 的光学性质。PCPNs 具有可控和出色的发光性能、低细胞毒性和生物相容性,成功应用于生物成像和荧光墨水。本策略为制备具有可控光致发光性能的富碳纳米材料提供了一个有吸引力的简便平台。
Macromol Rapid Commun. 2018-5-17
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