Plasmonics and Perovskites Laboratory, Department of Materials Science and Engineering, IIT Kanpur, Kanpur, Uttar Pradesh, 208016, India.
Small. 2023 Jun;19(22):e2206710. doi: 10.1002/smll.202206710. Epub 2023 Feb 28.
Here, the first experimental demonstration on the effect of incorporating new generation 2D material, MXene, on the thermoelectric performance of rare-earth-free oxide perovskite is reported. The charge localization phenomenon is predominant in the electron transport of doped SrTiO perovskites, which deters from achieving a higher thermoelectric power factor in these oxides. In this work, it is shown that incorporating Ti C T MXene in a matrix of SrTi Nb O (STN) facilitates the delocalization of electrons resulting in better than single-crystal-like electron mobility in polycrystalline composites. A 1851% increase in electrical conductivity and a 1000% enhancement in power factor are attained. Besides, anharmonicity caused by MXene in the STN matrix has led to enhanced Umklapp scattering giving rise to lower lattice thermal conductivity. Hence, 700% ZT enhancement is achieved in this composite. Further, a prototype of thermoelectric generator (TEG) using only n-type STN + MXene is fabricated and a power output of 38 mW is obtained, which is higher than the reported values for oxide TEG.
本文首次实验证明了将新一代二维材料 MXene 引入无稀土氧化物钙钛矿中对其热电性能的影响。掺杂 SrTiO 钙钛矿的电子输运中主要存在电荷局域化现象,这阻碍了这些氧化物中获得更高的热电功率因子。在这项工作中,我们表明,在 SrTiNbO(STN)基质中掺入 TiC2Tx MXene 有助于电子的离域,从而在多晶复合材料中实现优于单晶的电子迁移率。电导率提高了 1851%,功率因子提高了 1000%。此外,STN 基质中的 MXene 引起的非谐性导致增强的 Umklapp 散射,从而降低晶格热导率。因此,在这种复合材料中实现了 700%的 ZT 增强。此外,仅使用 n 型 STN+MXene 制造了一个热电发电机(TEG)原型,并获得了 38mW 的功率输出,高于氧化物 TEG 的报道值。