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Water-soluble green-emitting carbon nanodots with enhanced thermal stability for biological applications

机译:水溶性green-emitting碳nanodots生物热稳定性的提高应用程序

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High stability and water solubility of fluorescent nanomaterials are considered key factors to evaluate their feasibility for fundamental applications. Herein, water-soluble and thermally stable, green-emitting carbon nanodots (CNDs) have been synthesized via a facile hydrothermal method with an average size of 1.9 nm. CNDs showed green emission centered at 544 nm with the photo-luminescence quantum yield (PLQY) of up to 10.1% under the excitation of 400 nm. The obtained CNDs demonstrated high resistance towards photo-bleaching and an ionic (KCl) environment. Moreover, the aqueous solution of CNDs exhibited excellent stability under harsh thermal conditions from 10 degrees C to 80 degrees C. The as-prepared CNDs showed stable performance at high temperatures, even after keeping them at 80 degrees C for 30 min. Furthermore, the green emissive CNDs were incubated in T-ca cancer cells for bio-imaging applications. The results indicated that CNDs can served as an effective thermally-stable bio-imaging agent in T-ca cells at the physiological temperature range of 25 degrees C-45 degrees C. Green emission and excellent thermal stability make these CNDs promising fluorescent materials for potential applications in the medical field, which requires long-wavelength fluorescence and high-temperature imaging.
机译:高稳定性和水溶性的荧光纳米材料被认为是关键因素评估的可行性基础应用程序。稳定,green-emitting碳nanodots (cnd)通过简单的水热合成呢方法平均大小为1.9海里。显示绿色排放集中在544海里photo-luminescence量子产率(PLQY)10.1%的激励下400 nm。组合获得了高阻对photo-bleaching和离子(氯化钾)环境。在严酷的组合表现出优秀的稳定热条件下从10摄氏度到80度c和组合显示稳定高温性能,即使让他们在80度30分钟。此外,绿色发射组合为能孵化T-ca癌细胞应用程序。作为一种有效的耐热能代理在T-ca细胞生理温度25度的范围四十五度c .绿色排放和优秀的热稳定性使这些cnd承诺荧光材料潜在的应用在医学领域,它要求长波荧光和高温成像。

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