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Optimizing the average power factor of p-type (Na, Ag) co-doped polycrystalline SnSe

机译:优化p型(Na,Ag)共掺杂多晶SnSe的平均功率因数

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Despite the achievable high thermoelectric properties in SnSe single crystals, the poor mechanical properties and the relatively high cost of synthesis restrict the large scale commercial application of SnSe. Herein, we reported that co-doping with Na and Ag effectively improves the thermoelectric properties of polycrystalline SnSe. Temperature-dependent carrier mobility indicates that the grain boundary scattering is the dominant scattering mechanism near room temperature, giving rise to low electrical conductivity for the polycrystalline SnSe in comparison with that of the single crystal. Co-doping with Na and Ag improves the electrical conductivity of polycrystalline SnSe with a maximum value of 90.1?S cm ~(?1) at 323 K in Na _(0.005) Ag _(0.015) Sn _(0.98) Se, and the electrical conductivity of the (Na, Ag) co-doped samples is higher than that of the single doped samples over the whole temperature range (300–773 K). Considering the relatively high Seebeck coefficient of 335 μV K ~(?1) at 673 K and the minimum thermal conductivity of 0.48 W m ~(?1) K ~(?1) at 773 K, Na _(0.005) Ag _(0.015) Sn _(0.98) Se is observed to have the highest PF and ZT among the series of samples, with values of 0.50 mW cm ~(?1) K ~(?2) and 0.81 at 773 K, respectively. Its average PF and ZT are 0.43 mW cm ~(?1) K ~(?2) and 0.37, which is 92% and 68% higher than that of Na _(0.02) Sn _(0.98) Se, 40% and 43% higher than that of Ag _(0.02) Sn _(0.98) Se, and 304% and 277% higher than that of the previously reported SnSe, respectively.
机译:尽管在SnSe单晶中可以实现高的热电性能,但是差的机械性能和相对较高的合成成本限制了SnSe的大规模商业应用。在此,我们报道了与Na和Ag共掺杂有效地改善了多晶SnSe的热电性能。与温度有关的载流子迁移率表明,晶界散射是室温附近的主要散射机制,与单晶相比,多晶SnSe的电导率较低。在Na _(0.005)Ag _(0.015)Sn _(0.98)Se中,与Na和Ag共掺杂可提高多晶SnSe的电导率,在323 K时最大值为90.1?S cm〜(?1)。在整个温度范围(300–773 K)内,(Na,Ag)共掺杂样品的电导率高于单掺杂样品。考虑到673 K时相对较高的塞贝克系数335μVK〜(?1)和773 K时的最小导热系数为0.48 W m〜(?1)K〜(?1),Na _(0.005)Ag _(在一系列样品中,观察到0.015)Sn _(0.98)Se的PF和ZT最高,在773 K时分别为0.50 mW cm〜(?1)K〜(?2)和0.81。其平均PF和ZT为0.43 mW cm〜(?1)K〜(?2)和0.37,分别比Na _(0.02)Sn _(0.98)Se,40%和43分别高92%和68%。比Ag _(0.02)Sn _(0.98)Se高出5%,比先前报道的SnSe高出304%和277%。

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