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Effect of Donor-Acceptor Concentration Ratios on Non-Radiative Energy Transfer in Zero-Dimensional Cs4PbBr6 Perovskite/MEH-PPV Nanocomposite Thin Films

机译:供体-受体浓度比对零维Cs4PbBr6钙钛矿/ MEH-PPV纳米复合薄膜非辐射能传递的影响

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摘要

Composite materials with different concentration ratios of a hybrid of zero-dimensional (0-D) Cs PbBr perovskite, which acts as a donor (D), and poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV), which acts as an acceptor (A), were successfully prepared via a solution blending method prior to being deposited onto glass substrates by a spin-coating technique. The influence of acceptor content on the structural, optical, and energy transfer properties of the donor was investigated. The perovskite nanocrystals formed thin films without any chemical interactions within a matrix of MEH-PPV in the blend. The possibility of dipole–dipole (non-radiative) energy transfer from the 0-D Cs PbBr to the MEH-PPV was proven. The energy transfer parameters such as (critical distance of the energy transfer), k (apparent quenching constant), (quantum yield of D in the presence of A), (lifetime of D in the presence of A), (probability of energy transfer), (efficiency of energy transfer), (energy transfer radius), (energy transfer rate constant), (total decay rate), (critical concentration of A), and (conjugation length) were calculated based on the absorption and emission measurements.
机译:具有不同浓度比的作为施主(D)的零维(0-D)Cs PbBr钙钛矿和聚[2-甲氧基-5-(2-乙基己氧基)-1,4-通过溶液共混法成功制备了作为受体(A)的亚苯基亚乙烯基](MEH-PPV),然后通过旋涂技术将其沉积在玻璃基板上。研究了受主含量对施主的结构,光学和能量转移性质的影响。钙钛矿纳米晶体在共混物中的MEH-PPV基质内形成没有任何化学相互作用的薄膜。偶极-偶极(非辐射)能量从0-Ds Cs PbBr转移到MEH-PPV的可能性已得到证明。能量转移参数,例如(能量转移的临界距离),k(表观淬灭常数),(在A存在下D的量子产率),(在A存在下D的寿命),(能量转移的概率) ),(能量传递效率),(能量传递半径),(能量传递速率常数),(总衰减率),(A的临界浓度)和(共轭长度)是根据吸收和发射测量计算的。

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