Close-Spaced Sublimation of CdCl<sub>2</sub> Enables Uniform CdS Thin Films for Certified 8.08%-Efficient Sb<sub>2</sub>S<sub>3</sub> Solar Cells.

Huang, Yuqian; Feng, Lin; Yang, Junjie; Wang, Haolin; Yu, Zhen; Guo, Hongling; Yin, Yongtai; Zhang, Huanhuan et al. · Adv Mater · 2026

basic_science · Level V

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Abstract

CdCl<sub>2</sub> treatment has emerged as a transformative protocol for augmenting the crystallinity and electrical performance of CdS thin films, representing a foundational advancement in the development of high-efficiency CdTe and Sb<sub>2</sub>(S,Se)<sub>3</sub> solar cells. However, the conventional spin-coating method causes inhomogeneous deposition of CdCl<sub>2</sub> on the surface of CdS films, resulting in vastly different CdS(solid)-CdCl<sub>2</sub>(solid) and CdS(solid)-CdCl<sub>2</sub>(vapor) reaction modes during annealing. This process activates pinhole or crack formation and causes grain inhomogeneity due to the CdS(solid)-CdCl<sub>2</sub>(solid) faster reaction rate, deleteriously impacting the device performance through compromised carrier extraction and enhanced interfacial recombination. This study introduces a close-spaced sublimation (CSS) approach for uniform CdCl<sub>2</sub> vapor treatment of CdS films. This methodology disrupts the inhomogeneous growth paradigm, enabling the conformal deposition of ultrathin CdS layers (∼20 nm) on FTO/TiO<sub>2</sub> substrates. The optimized CdS thin films demonstrated enhanced charge extraction efficiency and suppressed interfacial recombination-evidence of improved carrier transport kinetics. Under AM 1.5G illumination, the best Sb<sub>2</sub>S<sub>3</sub> solar cell fabricated through this strategy delivered a record power conversion efficiency of 8.30% (certified 8.08%). The CSS technique, which enables controlled homogeneous crystallization, establishes a paradigm for realizing high-quality CdS films and is an essential breakthrough for high-efficiency Sb<sub>2</sub>(S,Se)<sub>3</sub> and CdTe photovoltaic devices.