Highly Efficient Energy Transfer from Silicon to Erbium in Erbium-Hyperdoped Silicon Quantum Dots.

Nanomaterials (Basel, Switzerland)(2023)

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摘要
Erbium-doped silicon (Er-doped Si) materials hold great potential for advancing Si photonic devices. For Er-doped Si, the efficiency of energy transfer () from Si to Er is crucial. In order to achieve high , we used nonthermal plasma to synthesize Si quantum dots (QDs) hyperdoped with Er at the concentration of ~1% (i.e., ~5 × 10 cm). The QD surface was subsequently modified by hydrosilylation using 1-dodecene. The Er-hyperdoped Si QDs emitted near-infrared (NIR) light at wavelengths of ~830 and ~1540 nm. An ultrahigh (~93%) was obtained owing to the effective energy transfer from Si QDs to Er, which led to the weakening of the NIR emission at ~830 nm and the enhancement of the NIR emission at ~1540 nm. The coupling constant () between Si QDs and Er was comparable to or greater than 1.8 × 10 cm·s. The temperature-dependent photoluminescence and excitation rate of Er-hyperdoped Si QDs indicate that strong coupling between Si QDs and Er allows Er to be efficiently excited.
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关键词
Er-hyperdoped Si QDs,coupling constant,efficiency of energy transfer,nonthermal plasma,strong coupling
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