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首页> 外文期刊>Nanoscale >Tunable fluorescence in chromophore-functionalized nanodiamond induced by energy transfer
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Tunable fluorescence in chromophore-functionalized nanodiamond induced by energy transfer

机译:可调荧光在chromophore-functionalized金刚石引起的能量转移

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摘要

Hybrid materials comprising diamond nanoparticles (ND) and oligo(phenylenevinylenes) (OPVs) have been synthesized by the covalent linking of acid-functionalized ND and OPV-amine. Chromophore-functionalized ND particles with long alkyl and π-conjugated groups are readily dispersed in various organic solvents without any precipitation after several hours. A careful study of the properties of the hybrid materials revealed an aggregation-induced energy transfer from the blue fluorescent nanodiamonds to green emitting OPVs. At very low concentrations the hybrid emits in the blue region, but as the concentration is increased a gradual transition from blue to green emission occurs. Competitive processes such as aggregation-induced enhanced emission and self-absorption have been ruled out and a molecular picture of the phenomenon is proposed. This strategy can open a plethora of new avenues for fluorescent nanodiamonds in optoelectronics and light harvesting apart from bio-imaging.
机译:组成的混合材料金刚石纳米颗粒(ND)和低聚糖(phenylenevinylenes)(口服脊髓灰质炎疫苗)被合成的共价连接acid-functionalized ND和OPV-amine。Chromophore-functionalized ND粒子长烷基和π共轭群体很容易分散在不同的有机溶剂没有任何几个小时后沉淀。研究混合材料的属性显示一个aggregation-induced能量转移蓝色荧光纳米金刚石的绿色口服脊髓灰质炎疫苗。在蓝色区域混合排放,但随着浓度增加逐渐过渡由蓝色变为绿色排放发生。过程,如aggregation-induced增强排放和热衷已经排除和一个分子的现象建议。荧光纳米金刚石的新途径光电子学和光收获除了能。

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