In this work, we employ the first-principles calculations based on the den-sity functional theory (DFT) and device simulation via the SCAPS-1D model to evaluate the photovoltaic characteristics of a ternary antimony selenide Na3SbSe4, which provides a theoretical guide for the. In this work, we employ the first-principles calculations based on the den-sity functional theory (DFT) and device simulation via the SCAPS-1D model to evaluate the photovoltaic characteristics of a ternary antimony selenide Na3SbSe4, which provides a theoretical guide for the. Antimony metal battery to be used at desert data centre in Nevada From Energy Storage News– "Liquid metal" antimony based battery technology developed as a potential low-cost competitor Over a relatively short period, the efficiency of Sb 2 X 3 solar cells exhibits remarkable growth, escalating. The development prospects of clean antimony solar containe highlights the critical role of battery technology in promoting sustainable transportation. Th s review offers a comprehensive introduction nd up in the electrolyte solution that is ultimately deposited onto the negative electrode. Here,it. in 2025*, a critical component often flies under the radar - antimony. Sounds like scie n the cells that makes the lead walls. The global solar storage container market is experiencing explosive growth, with demand increasing by over 200% in the past two years. North America leads with 40% market. In this work, we investigate the optoelectronic properties of antimony selenides Na3SbSe4 using first-principles calcula-tions and evaluate their photovoltaic potential by device simulations. The hybrid functionals predict a direct band gap of approximately 1. 7 eV and effective masses of 0.