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Water-soluble chiral CdSe/CdS dot/rod nanocrystals for two-photon fluorescence lifetime imaging and photodynamic therapy

机译:水溶性手性CdSe / cd点/棒纳米晶体为双光子荧光成像和使用寿命光动力治疗

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摘要

Compared with traditional organic contrast agents, semiconductor nanocrystals (NCs) have unique optical properties that are vital for biological applications with ultrahigh sensitivities, such as long fluorescence lifetime and large multiphoton absorption (MPA). However, the MPA properties and biological applications of chiral-ligand-stabilized semiconductor NCs have scarcely been reported, which seriously hinders their relevant applications. In this work, we report the aqueous phase transfer of CdSe/CdS dot/rod NCs with the use of cysteine molecules, after which the NCs preserve their high fluorescence quantum yield, long lifetime, and efficient circular dichroism. More importantly, the investigated dot/rod NCs show extremely large two- and three-photon absorption action cross-sections in the first and second biological windows, with maximum values of similar to 21 000 GM at 800 nm and similar to 4.6 x 10(-78) cm(6) s(2) per photon(2) at 1300 nm, which are among the largest values reported for water-soluble fluorescent nanoparticles. Interestingly, the dot/rod NCs exhibit a high singlet oxygen generation efficiency of 35%. In addition, for the first time, two-photon fluorescence lifetime imaging and photodynamic therapy of the dot/rod NCs were successfully demonstrated. The performed investigation of the optical properties of these water-soluble CdSe/CdS dot/rod NCs indicates that they are promising candidates for nonlinear biological imaging applications.
机译:与传统的有机造影剂相比,半导体纳米晶体(nc)独一无二的光学性质,生物至关重要应用程序与超高敏感性,荧光寿命和大多光子吸收(MPA)。属性和生物的应用chiral-ligand-stabilized半导体nc已经很少被报道,这严重阻碍了他们的相关应用。报告的水相转移CdSe / cd点/杆nc的半胱氨酸分子,之后,nc保持其高荧光量子产率、长寿命和高效的圆二色性。研究点/杆nc显示非常大两年期和three-photon吸收行动在第一次和第二次生物横截面窗口,类似于000年21的最大值通用汽车在800 nm和类似于4.6 x 10(-78)厘米(6)每个光子s(2)(2)在1300 nm,之一最大的值为水溶性报道荧光纳米粒子。点/杆nc展览单线态氧发电效率为35%。第一次,双光子荧光寿命成像、光动力治疗点/杆nc是成功了。调查的光学特性水溶性CdSe / cd点/杆nc表明他们是有前途的候选人为非线性生物成像的应用程序。

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