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◆ ACS Materials Au2026-03-03· Quantum dot

Strongly Confined Bismuth Antimonide Quantum Dots

Min Khadka, R. Subedi, Qiaohui Zhou, Xin Lu, Joelin A. Agyei‐Mensah, Miguel José–Yacamán, Guillaume Lang, Étienne Herth, Grégory Guisbiers

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Bismuth antimonide (Bi 1– x Sb x ) has emerged as a highly promising material for quantum applications due to its complex band structure. In this study, spherical Bi 1– x Sb x quantum dots (QDs), with a diameter of around 8 ± 2 nm, were successfully synthesized by pulsed laser ablation in liquids. The energy bandgap was determined at 2.02 ± 0.27 eV, which is significantly higher than the bulk value (∼0.025 eV). The strong confinement nature of the dots was confirmed by the Raman peak shifts. The chemical composition of the Bi 1– x Sb x QDs was measured to be around 77 ± 2 at. % of Bi and 23 ± 2 at. % of Sb. The colloid containing the Bi 1– x Sb x QDs was classified as highly stable, displaying a zeta potential of −38 ± 18 mV. Finally, the Bi 1– x Sb x QDs exhibited an electron spin resonance (ESR) signal at room temperature and at cryogenic temperature (4.2 K); consequently, revealing the presence of paramagnetic states.
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