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Solution-based synthesis of wurtzite Cu2ZnSnS4 nanoleaves introduced by α-Cu2S nanocrystals as a catalyst

机译:为基础的解决方案的合成纤锌矿Cu2ZnSnS4nanoleaves引入α-Cu2S纳米晶体作为一个催化剂

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Cu2ZnSnS4 is a promising solar absorbing material in solar cells due to its high absorption coefficient and abundance on earth. We have demonstrated that wurtzite Cu2ZnSnS4 nanoleaves could be synthesized through a facile solution-based method. Detailed investigation of the growth process indicates that α-Cu2S nanocrystals are first formed and then serve as a catalyst to introduce the Cu, Zn, and Sn species into the nanoleaf growth for fast ionic conduction. The structure of the as-synthesized nanoleaves is characterized by powder X-ray diffraction, high-resolution transmission electron microscopy, fast Fourier transform, and energy dispersive X-ray spectroscopy mapping. Photoresponses of Cu2ZnSnS4 nanoleaves are evaluated by l-V curves of a Cu2ZnSnS4 nanoleaf film. It is believed that the enhancement of the photoresponse current of the Cu2ZnSnS4 nanoleaf film can be attributed to fast carrier transport due to the single crystalline nature and enhanced light absorption resulting from larger absorption areas of the Cu2ZnSnS4 nanoleaves.
机译:Cu2ZnSnS4太阳能吸收材料是一种很有前途的在太阳能电池由于其高吸收地球上系数和丰富。表明,纤锌矿Cu2ZnSnS4 nanoleaves可以通过简单合成为基础的解决方案的方法。生长过程表明,α-Cu2S首先形成,然后作为纳米晶体催化剂引入铜、锌和锡的物种离子进入nanoleaf增长快传导。nanoleaves特点是粉末x射线衍射,高分辨率的传播电子显微镜、快速傅里叶变换能量色散x射线谱映射。光响应的Cu2ZnSnS4 nanoleaves评估的l-V曲线Cu2ZnSnS4 nanoleaf电影。光响应当前的Cu2ZnSnS4 nanoleaf电影可以归因于快速载波传输由于单结晶性质和增强光吸收造成更大的吸收地区的Cu2ZnSnS4 nanoleaves。

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