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首页> 外文期刊>Science Advances >Charge extraction via graded doping of hole transport layers gives highly luminescent and stable metal halide perovskite devices
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Charge extraction via graded doping of hole transport layers gives highly luminescent and stable metal halide perovskite devices

机译:通过空穴传输层的分级掺杂进行电荷提取,可提供高度发光和稳定的金属卤化物钙钛矿器件

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One source of instability in perovskite solar cells (PSCs) is interfacial defects, particularly those that exist between the perovskite and the hole transport layer (HTL). We demonstrate that thermally evaporated dopant-free tetracene (120 nm) on top of the perovskite layer, capped with a lithium-doped Spiro-OMeTAD layer (200 nm) and top gold electrode, offers an excellent hole-extracting stack with minimal interfacial defect levels. For a perovskite layer interfaced between these graded HTLs and a mesoporous TiOsub2/sub electron-extracting layer, its photoluminescence yield reaches 15% compared to 5% for the perovskite layer interfaced between TiOsub2/sub and Spiro-OMeTAD alone. For PSCs with graded HTL structure, we demonstrate efficiency of up to 21.6% and an extended power output of over 550 hours of continuous illumination at AM1.5G, retaining more than 90% of the initial performance and thus validating our approach. Our findings represent a breakthrough in the construction of stable PSCs with minimized nonradiative losses.
机译:钙钛矿太阳能电池(PSC)不稳定的一种来源是界面缺陷,尤其是存在于钙钛矿和空穴传输层(HTL)之间的界面缺陷。我们证明,在钙钛矿层顶部热蒸发的无掺杂并四苯(120 nm)覆盖有锂掺杂的Spiro-OMeTAD层(200 nm)和顶部金电极,可提供极佳的空穴提取层,并将界面缺陷降至最低水平。对于在这些梯度HTL和介孔TiO 2 电子提取层之间介电的钙钛矿层,其光致发光产率达到15%,而在TiO 2 之间介电的钙钛矿层的光致发光率达到5%。 >和单独使用Spiro-OMeTAD。对于具有分级HTL结构的PSC,我们证明其效率高达21.6%,并且在AM1.5G时连续照明可提供超过550小时的扩展功率输出,保留了90%以上的初始性能,因此验证了我们的方法。我们的发现代表了在稳定的PSC的建设方面取得的突破,其无辐射损失最小。

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