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A Comparative Study of the Effects of Nontoxic Chloride Treatments on CdTe Solar Cell Microstructure and Stoichiometry

机译:无毒氯化物处理对CdTe太阳电池微结构和化学计量的影响的比较研究

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This work presents the first systematic comparison of the effects of a range of chlorides (CdCl2, MgCl2, NaCl, and NH4Cl) on the microstructure and chemical composition of CdTe/CdS/ZnO/SnO2 solar cells, providing valuable insight to the ubiquitous Cl-activation process. Using X-ray diffraction, it is shown that CdCl2 induces the greatest extent of recrystallization (standard deviation of texture coefficients, σ, reduces from 0.93 for as-grown CdTe to 0.43) and minimizing stress (from 178 MPa for as-grown material to zero). MgCl2 treatment also yields significant randomization of the CdTe texture (σ = 0.55) but NaCl treatment does not (σ = 1.10). A strong correlation between the extent of metallurgical changes induced by the chloride treatment (and consequently, device efficiency) and the dissociation energy of the cationCl bond is shown, thereby accounting for the ineffectiveness of NaCl (bond energy = 4.3 eV). From this, a mechanism for Cl activation is postulated. By X-ray photoelectron spectroscopy it is also shown that the Te/Cd ratio at the back surface, and the Cl content at the CdTe–CdS interface, are both higher following CdCl2- and MgCl2 treatments (Te/Cd = 1.3–1.4, and 1–2 at% Cl) than following NaCl treatment (Te/Cd = 1.1, and 0 at% Cl).
机译:这项工作提出了一系列氯化物(CdCl2,MgCl2,NaCl和NH4Cl)对CdTe / CdS / ZnO / SnO2太阳能电池的微观结构和化学组成的影响的首次系统比较,为普遍存在的Cl-激活过程。使用X射线衍射显示,CdCl2诱导了最大程度的重结晶(织构系数的标准偏差σ,从CdTe生长时的0.93降低到0.43),并使应力最小化(从CdTe生长材料的178 MPa降低到CdTe)。零)。 MgCl2处理还可以使CdTe织构具有明显的随机性(σ= 0.55),但NaCl处理则没有(σ= 1.10)。显示了由氯化物处理引起的冶金变化程度(以及因此的装置效率)与阳离子Cl键的离解能之间有很强的相关性,从而说明了NaCl的无效性(键能= 4.3 eV)。据此,假定了Cl激活的机制。 X射线光电子能谱还表明,经过CdCl2-和MgCl2处理后,背面的Te / Cd比和CdTe-CdS界面的Cl含量都更高(Te / Cd = 1.3-1.4,和氯化钠处理后的1和2 at%Cl)(Te / Cd = 1.1,Cl为0 at%)。

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