A new technical paper titled “Effects of Proton Radiation on Tin Oxide: Implications for Space Electronics” was published by researchers at Kyungpook National University and Korea Atomic Energy ...
Abstract: Diamond is desirable for the application in power device due to its extremely high theoretical breakdown electric field (>10 MV/cm). However, because of electric field crowding, relatively ...
Nanotechnology has revolutionized various industries, prompting the exploration of sustainable methods for nanoparticle (NP) synthesis. In a recent article published in the journal Scientific Reports, ...
The superior heat capacity of tin makes it an ideal material for several important industrial applications. This, along with its good electrical, physical, and chemical properties, makes tin and its ...
Scientists from NREL and the University of Louisville have built an inverted perovskite solar cell with an electron transport layer (ETL) based on yttrium-doped tin oxide (SnO2) nanoparticles. “The ...
A group of scientists at the University of Groningen in the Netherlands has fabricated an organic solar cell based on an electron transport layer (ETL) made of tin oxide (SnO2) that reportedly enables ...
Perovskite solar cell technology has attracted significant global academic and industrial attentions, with the unprecedented efficiency boosting speed. One of the greatest challenges in the perovskite ...
Scientists working at the Department for Functional Nanomaterials at the Institute of Nuclear Physics of the Polish Academy of Sciences designed and synthesized a functional ternary Pt/Re/SnO2/C ...
Numerous research activities around nanoparticles have created a plethora of uses for these particles in fields such as bio technology, drug delivery, optics and electronics. This article deals with ...
Tin oxide (SnO 2) is also known as stannic oxide. It can be found naturally as the mineral cassiterite. It is typically a white to off-white and sometime grey crystalline solid. Tin oxide is most ...
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