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Gram-scale solution-based synthesis of SnSe thermoelectric nanomaterials

机译:基于克氏溶液的SnSe热电纳米材料的合成

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Gram-scale SnSe nanomaterials have been prepared by exploiting a simple wet-chemical route at ambient environments in which a transparent NaHSe solution was mixed with SnCl2 and sodium ascorbate, followed by hydrothermal heating for 24 h. It is notable that phase-pure crystalline SnSe nanorods having aspect ratios of similar to 5 were obtained within a short period of time and without any sophisticated instruments or inert environment. The key steps and conditions to obtain pure SnSe nanorods in the synthesis process were identified and discussed. The SnSe powder was sintered using a facile spark plasma sintering method to form polycrystalline pellets for thermoelectric property measurements. According to the thermopower measurement results, the pristine SnSe pellets are p-type, and showed slightly higher electrical conductivities compared to that of single crystalline SnSe. The counterpart n-type SnSe pellets were also fabricated by doping Bi with a high energy ball milling process. The thermal conductivity of our polycrystalline SnSe was found to be in between that of single crystalline SnSe along a- and b- axis (or c-axis) direction. The facile and new synthesis route, high reproducibility and cost-effectiveness are easily adaptable for the formation of other doped and un-doped metal selenide nanomaterials with a short reaction time for various applications beyond thermoelectrics.
机译:通过在周围环境中采用简单的湿化学路线,将透明的NaHSe溶液与SnCl2和抗坏血酸钠混合,然后水热加热24 h,可以制备出克级的SnSe纳米材料。值得注意的是,在短时间内并且没有任何复杂的仪器或惰性环境下获得了具有近似于5的长宽比的纯相晶体SnSe纳米棒。确定并讨论了在合成过程中获得纯SnSe纳米棒的关键步骤和条件。使用简便的火花等离子体烧结法烧结SnSe粉末,以形成用于热电性能测量的多晶粒料。根据热功率测量结果,原始的SnSe颗粒为p型,与单晶SnSe相比,导电性略高。通过用高能球磨工艺对Bi进行掺杂,也可以制造出相应的n型SnSe球团。发现我们的多晶SnSe的热导率沿a轴和b轴(或c轴)方向在单晶SnSe的热导率之间。简便易行的合成路线,高重现性和成本效益很容易适应于形成其他掺杂和未掺杂的金属硒化物纳米材料,反应时间短,可用于热电以外的各种应用。

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