Research [ASAP] Defect-Engineered La1.7Ti2O7−δ Nanofiber as a High-Rate and High-Stability Anode for Li-Ion Batteries LikeLiked Date: October 27, 2025 Less than 1 MinRead Views: 5 ACS Applied Engineering Materials DOI: 10.1021/acsaenm.5c00661 Source: http://dx.doi.org/10.1021/acsaenm.5c00661 Tags:Materials Industry FacebookTwitterLinkedinWhatsAppTelegramEmail ALT-Lab-Ad-1ALT-Lab-Ad-2ALT-Lab-Ad-3ALT-Lab-Ad-4ALT-Lab-Ad-5ALT-Lab-Ad-6ALT-Lab-Ad-7ALT-Lab-Ad-8ALT-Lab-Ad-9ALT-Lab-Ad-10ALT-Lab-Ad-11ALT-Lab-Ad-12ALT-Lab-Ad-13 Recent Articles Environmental impact assessment of multifunctional desalination systems Research December 26, 2025 Microwave-driven catalytic pyrolysis and reforming of methane for hydrogen production Research December 26, 2025 Application of construction and demolition waste (gypsum and mortar) for the removal of metal ions, Pb2+, Cu2+, and Ni2+ Research December 26, 2025 The Rubber.er Cafe / SA-ARD studio Built Environment December 25, 2025 Charted: America’s Low-Wage Workers by Education Level Finance & investments December 25, 2025 Sustainable adsorption technologies for textile dye removal: Advances in biomass-derived and magnetically modified activated carbons Research December 25, 2025 Ranked: The World’s Most Spoken Languages by Total Speakers Finance & investments December 25, 2025 House Requena / Sommet Built Environment December 25, 2025 Jack’s Classic Citrus Feed Water Soluble Fertilizer: Review & Guide Food & Agriculture December 25, 2025 Ranked: Approval Ratings of World Leaders Heading Into 2026 Finance & investments December 25, 2025 Load more