In the version of this article initially published, there was an error in the third paragraph of the “Constructing a dielectric PVDF-based CSPE” section, where in the text now reading “Moreover, the Li+ transference number (\({t}_{{{\rm{L}}{\rm{i}}}^{+}}\)) of PALA increases to 0.71 compared with 0.31 for PL (Supplementary Fig. 11e,f and Supplementary Table 3)”, the transference number originally read “0.57”. The text and Supplementary Table 3 have been updated accordingly. In the original version of Supplementary Fig. 11e,f, the authors inadvertently copied the CA curve from another PL control sample tested with d.c. voltage of 20 mV into the PALA sample. The text and Supplementary Information are now amended in the HTML and PDF versions of the article.
Author Correction: A ductile solid electrolyte interphase for solid-state batteries
Why This Matters
This correction highlights ongoing efforts to improve the accuracy and reliability of research on solid-state batteries, which are vital for advancing safer and more efficient energy storage solutions. Accurate data on electrolyte properties like transference numbers are crucial for developing better battery materials and technologies for consumers and industry. Ensuring precise scientific reporting supports the development of next-generation batteries with higher performance and safety standards.
Key Takeaways
- Correction improves accuracy of electrolyte transference data
- Enhanced reliability supports development of safer solid-state batteries
- Accurate research accelerates innovation in energy storage technologies
Get alerts for these topics