Building next-generation semiconductors and low-power electronic devices requires precisely stacking materials with different functions. In this process, it is essential to preserve each material's intrinsic properties, as well as the interface where the two materials meet, without damage. Layered van der Waals materials, including transition metal dichalcogenides (TMDs), have attracted considerable attention as next-generation semiconductor platforms because their layers interact through weak forces, enabling different materials to be stacked while maintaining atomically clean interfaces.
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| # | Наименование новости | Тональность | Информативность | Дата публикации |
|---|---|---|---|---|
| 1 | New technique for building ultra-thin material stacks promises quantum breakthrough | 5 | 7 | 14-07-2026 |
| 2 | Researchers develop a new predictive model for designing 2D perovskites | 5 | 7 | 02-07-2026 |
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| 4 | Layered crystal embeds atom-thin iron selenide can improve waste heat conversion | 5 | 8 | 17-07-2026 |
| 5 | New method scales up twist-engineered oxide materials for future electronics | 5 | 7 | 15-07-2026 |
| 6 | Tiny molecular layers help perovskite solar cells survive 1,210 hours of heat and light | 5 | 7 | 17-07-2026 |
| 7 | Spontaneous current loops in a kagome metal point to hidden quantum order | 0 | 7 | 02-07-2026 |
| 8 | Tandem solar cell sets 25.5% efficiency record with CIGS-perovskite design | 7 | 8 | 01-07-2026 |
| 9 | Molecular model for semiconductor surfaces developed | 0 | 8.28 | 22-07-2026 |
| 10 | Scientists develop predictive roadmap to boost performance in next-gen spintronics | 5 | 7 | 25-06-2026 |