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Electrosynthesis of Atomically Precise Au Nanoclusters.

Adv Sci (Weinh)

March 2025

Institute of Crystalline Materials, Shanxi University, Taiyuan, Shanxi, 030006, China.

Innovation in synthesis methodologies is crucial for advancing the discovery of new materials. This work reports the electrosynthesis of a [Au(4-BuPhC≡C)(Dppe)]Cl nanocluster (Au NC) protected by alkynyl and phosphine ligands. From simple precursor, HAuCl and ligands, the whole synthesis is driven by a constant potential in single electrolytic cell.

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In order to relate nanoparticle properties to function, fast and detailed particle characterization is needed. The ability to characterize nanoparticle samples using optical microscopy techniques has drastically improved over the past few decades; consequently, there are now numerous microscopy methods available for detailed characterization of particles with nanometric size. However, there is currently no "one size fits all" solution to the problem of nanoparticle characterization.

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Background: Trachoma, a neglected tropical disease, remains a significant public health concern in many regions, particularly in sub-Saharan Africa and in Yobe State, Nigeria. One approach for elimination involves administering tetracycline eye ointment (TEO) to children <6 months of age as part of annual mass drug administration (MDA), aligning with the World Health Organization's 'A' component of the SAFE (Surgery, Antibiotics, Facial hygiene and Environmental sanitation) strategy for elimination of trachoma as a public health problem. However, suboptimal compliance rates in affected populations pose challenges, potentially serving as a reservoir for reinfection and hindering progress toward trachoma elimination.

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Non-Orthogonal Multiple Access (NOMA) is the successive multiple-access methodologies for modern communication devices. Energy Efficiency (EE) is suggested in the NOMA system. In dynamic network conditions, the consideration of NOMA shows high computational complexity that minimizes the EE to degrade the system performance.

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