Center for Chemistry of Novel & High-Performance Materials, Department of Chemistry, Zhejiang University , Hangzhou 310027, China.
J Am Chem Soc. 2016 Dec 7;138(48):15727-15735. doi: 10.1021/jacs.6b10102. Epub 2016 Nov 28.
Single-molecular spectroscopy reveals that photoluminescence (PL) of a single quantum dot blinks, randomly switching between bright and dim/dark states under constant photoexcitation, and quantum dots photobleach readily. These facts cast great doubts on potential applications of these promising emitters. After ∼20 years of efforts, synthesis of nonblinking quantum dots is still challenging, with nonblinking quantum dots only available in red-emitting window. Here we report synthesis of nonblinking quantum dots covering most part of the visible window using a new synthetic strategy, i.e., confining the excited-state wave functions of the core/shell quantum dots within the core quantum dot and its inner shells (≤ ∼5 monolayers). For the red-emitting ones, the new synthetic strategy yields nonblinking quantum dots with small sizes (∼8 nm in diameter) and improved nonblinking properties. These new nonblinking quantum dots are found to be antibleaching. Results further imply that the PL blinking and photobleaching of quantum dots are likely related to each other.
单分子光谱学揭示,在恒定光激发下,单个量子点的光致发光(PL)会随机地在亮态和暗态/暗态之间闪烁,并且量子点很容易光漂白。这些事实对这些有前途的发射器的潜在应用产生了很大的怀疑。经过大约 20 年的努力,合成不闪烁的量子点仍然具有挑战性,不闪烁的量子点仅在红色发射窗口中可用。在这里,我们报告了使用新的合成策略合成覆盖大部分可见窗口的不闪烁量子点的方法,即限制核/壳量子点的激发态波函数在核量子点及其内壳层(≤∼5 个单层)内。对于红色发光量子点,新的合成策略得到了具有较小尺寸(直径约 8nm)和改善的不闪烁性质的不闪烁量子点。这些新的不闪烁量子点被发现具有抗光漂白性。结果进一步表明,量子点的 PL 闪烁和光漂白可能相互关联。