Insights into the SILAR Processing of Cu x Zn1-x S Thin Films via a Chemical, Structural, and Optoelectronic Assessment

被引:0
|
作者
Cabrera-German, Dagoberto [2 ]
Martinez-Gil, Miguel [1 ]
Fuentes-Rios, Lorenzo [2 ]
Montiel-Gonzalez, Zeuz [3 ,4 ]
Mazon-Montijo, Dalia Alejandra [4 ,5 ]
Sotelo-Lerma, Merida [2 ]
机构
[1] Univ Sonora, Dept Fis Matemat & Ingn, Navojoa 85880, Sonora, Mexico
[2] Univ Sonora, Dept Invest Polimeros & Mat, Hermosillo 83000, Sonora, Mexico
[3] CONAHCYT Ctr Invest Mat Avanzados SC, Subsede Monterrey, Apodaca 66628, Nuevo Leon, Mexico
[4] CIMAV Mty TECNL CIIT, Lab Diseno & Optimizac Recubrimientos Avanzados D, Parque Invest & Innovac Tecnol, Apodaca 66629, Nuevo Leon, Mexico
[5] Ctr Invest Innovac & Tecnol CIIT, CONAHCYT Tecnol Nacl Mexico Campus Nuevo Leon TEC, Apodaca 66629, Nuevo Leon, Mexico
来源
ACS OMEGA | 2023年 / 8卷 / 50期
关键词
P-TYPE TRANSPARENT; COPPER ACTIVATION; RAY-ABSORPTION; OPTICAL-PROPERTIES; OXIDATION-STATES; BATH DEPOSITION; SULFIDE; SURFACE; SPHALERITE; XPS;
D O I
10.1021/acsomega.3c06848
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Careful analysis of the chemical state of CuxZn1-xS thin films remains an underdeveloped topic although it is key to a better understanding of the phase transformations and the linking between structural and optoelectronic properties needed for tuning the performance of CuxZn1-xS-based next-generation energy devices. Here, we propose a chemical formulation and formation mechanism, providing insights into the successive ionic layer adsorption and reaction (SILAR) processing of CuxZn1-xS, in which the copper concentration directly affects the behavior of the optoelectronic properties. Via chemical, optoelectronic, and structural characterization, including quantitative X-ray photoelectron spectroscopy, we determine that the CuxZn1-xS thin films at low copper concentration are composed of ZnS, metastable CuxZn1-xS, and CuS, where the evidence suggests that a depth compositional gradient exists, which contrasts with homogeneous films reported in the literature. The oxidation states for copper and sulfide species indicate that the films grow following a formation mechanism governed by ionic exchange and diffusion processes. At high copper concentrations, the CuxZn1-xS thin films are covellite CuS that grew on a ZnS seed layer. Hence, this work reiterates that future research related to fine-tuning the application of this material requires a careful analysis of the depth-profile compositional and structural characteristics that can enable high conductivity and transparency.
引用
收藏
页码:48056 / 48070
页数:15
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