...
首页> 外文期刊>Nanoscale >Postsynthesis Mn-doping in CsPbI3 nanocrystals to stabilize the black perovskite phase
【24h】

Postsynthesis Mn-doping in CsPbI3 nanocrystals to stabilize the black perovskite phase

机译:CSPBI3纳米晶体中的结合后Mn掺杂以稳定黑色钙钛矿相位

获取原文
获取原文并翻译 | 示例

摘要

Long term stability of the black perovskite phase of CsPbI3 nanocrystals under ambient conditions is an important challenge for their optoelectronic applications in real life. The nanocrystalline size is found to improve the stability of the black phase at room temperature. Furthermore, doping Mn is proposed to improve the stability of the black perovskite phase of CsPbI3 nanocrystals (NCs). However, the undoped and Mn-doped CsPbI3 NCs are prepared in different batches under somewhat different synthesis conditions thus obliterating the role of Mn in the stability of the black phase of CsPbI3 NCs. Here, we elucidate the effect of Mn doping on the surface and lattice energy of CsPbI3 NCs, stabilizing the black phase. For this purpose, we employ a postsynthesis doping strategy which has an advantage that the initial host remains the same for both undoped and Mn-doped samples. Uncertainties in the size/shape, surface energy, and structure through direct synthesis of undoped and Mn-doped NCs in different batches can be neglected in our postsynthesis doping strategy, allowing us to study the effect of dopants in a more controlled manner. Our postsynthesis Mn-doping in CsPbI3 NCs shows that the black phase stability under ambient conditions improves from few days for the undoped sample to nearly a month's time for the Mn-doped sample. We found that though surface passivation with a dopant precursor improves both colloidal and phase stability of black CsPbI3 NCs, it is the contraction of the lattice upon Mn-doping that mainly stabilizes the films of black phase CsPbI3 NCs. Similarly, we found that Mn-doped CsPbBr3 NCs show improved ambient stability of photoluminescence compared to the undoped sample.
机译:在环境条件下,CSPBI3纳米晶体的黑色钙钛矿期的长期稳定性是其现实生活中其光电应用的重要挑战。发现纳米晶体大小可在室温下改善黑色相的稳定性。此外,提出了掺杂MN来改善CSPBI3纳米晶体(NCS)黑色钙钛矿相的稳定性。然而,在某些不同的合成条件下,在不同批处理中制备了未蛋白和MN掺杂的CSPBI3 NC,从而消除了MN在CSPBI3 NC的黑相稳定性中的作用。在这里,我们阐明了Mn掺杂对CSPBI3 NCS表面和晶格能的影响,从而稳定了黑色相。为此,我们采用了一种结合后的掺杂策略,该策略具有一个优势,即对未伙伴和MN掺杂的样品保持不变。通过直接合成不同批处理中未居和MN掺杂的NC的大小/形状,表面能量和结构的不确定性可以在我们的结合后掺杂策略中忽略,从而使我们能够以更具控制的方式研究掺杂剂的效果。我们在CSPBI3 NCS中的结合后MN掺杂表明,环境条件下的黑相稳定性从未居尚的样本的几天改为MN掺杂样品的近一个月。我们发现,尽管具有掺杂前体的表面钝化可以改善黑色CSPBI3 NC的胶体和相位稳定性,但MN掺杂时晶格的收缩主要稳定了黑色相CSPBI3 NC的膜。同样,我们发现与未掺杂的样品相比,掺杂MN的CSPBBR3 NCS显示了光致发光的环境稳定性的提高。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号