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Article summary:

1. CsPbI3 perovskite has excellent thermal/light stability, various fabrication methods, and suitable bandgap for constructing tandem devices with silicon or other low-bandgap perovskite solar cells.

2. Various organic matrix additives have been used to obtain a stable photoactive CsPbI3 perovskite, such as co-evaporating CsI and PbI2 precursor on substrate, atomic layer deposition (ALD) method, vacuum-assisted thermal annealing method, additive-involved leaching method, and formamidine acetate (FAAc).

3. A thiophene acyloin ligand derivative, 1,2-Di(thiophen-2-yl)ethane-1,2-dione (DED), was developed as a precursor additive to passivate the undercoordinated Pb2+ defects and stabilize the γ-CsPbI3 film.

Article analysis:

The article is generally reliable and trustworthy in its reporting of the research conducted by Wang et al., which aimed to develop a thiophene acyloin ligand derivative as a precursor additive to passivate the undercoordinated Pb2+ defects and stabilize the γ‐CsPbI3 film. The article provides detailed information on the research process and results obtained from experiments conducted by Wang et al., including the use of various organic matrix additives to obtain a stable photoactive CsPbI3 perovskite. The article also presents evidence for its claims in the form of references to previous studies that have been conducted on similar topics.

However, there are some potential biases in the article that should be noted. For example, while it does provide evidence for its claims in terms of references to previous studies, it does not explore any counterarguments or present both sides equally when discussing these studies. Additionally, there is no mention of possible risks associated with using this thiophene acyloin ligand derivative as a precursor additive or any discussion of potential drawbacks or limitations associated with this approach. Furthermore, there is some promotional content in the article which could be seen as biased towards promoting this particular approach over others that may exist.

In conclusion, while overall this article is reliable and trustworthy in its reporting of Wang et al.'s research findings regarding their development of a thiophene acyloin ligand derivative as a precursor additive for stabilizing γ‐CsPbI3 films, there are some potential biases that should be noted when considering its trustworthiness and reliability.