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Full-Visible-Spectrum Emitters from Pyrolysis of Soluble Si-SiBonded Network Polymers

机译:可溶性Si-Si键合网络聚合物热解的全可见光谱发射器

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摘要

Crystalline silicon is a poor UV-visible-near IR emitter because of its indirect, narrow band gap and low quantum yield of ~1 x 10~(-2) at room temperature. To effectively confine a photoexcited electron-hole pair (exciton) within Si's Bohr radius of ~5 nm, we have theoretically and experimentally explored several low-dimensional Si-based materials. Although Si-Si bonded network polysilyne was previously regarded as a soluble model polymer of amorphous Si and Si nanosheet-like "saturated sila-graphene," further studies on pyrolytic products of polysilyne derivatives and their inherent photophysical properties under a vacuum have not yet been reported. The present paper demonstrated visible light emission from ten soluble polysilynes in the range 460 nm (2.70 eV) to 740 nm (1.68 eV) at both 77 K and room temperature by controlling temperature and time of the pyrolysis (200-500 °C, 10-90 min) under a vacuum. When very weakly deep-red emitting Si particles produced by the pyrolysis of poly("-butylsilyne) at 500 °C for 90 min were exposed to air, the photoluminescence switched abruptly to an intense sky-blue color (A = 430 nm), with a quantum yield of 20-25 and a short lifetime of ~5 ns in common organic solvents at room temperature because of the Siloxene-like, multilayered Si-sheet structures.
机译:晶体硅是一种较差的紫外-可见-近红外发射器,因为它具有间接的窄带隙和室温下~1 x 10~(-2)%的低量子产率。为了有效地将光激发电子-空穴对(激子)限制在Si的玻尔半径~5 nm内,我们从理论和实验上探索了几种低维硅基材料。虽然Si-Si键合网络聚硅炔以前被认为是非晶硅和Si纳米片状“饱和硅石墨烯”的可溶性模型聚合物,但对聚硅炔衍生物的热解产物及其在真空下的固有光物理性质的进一步研究尚未见报道。本文通过控制真空下热解的温度和时间(200-500 °C,10-90 分钟),证明了在77 K和室温下460 nm (2.70 eV)至740 nm (1.68 eV)范围内的10种可溶性聚硅炔的可见光发射。当聚(“-丁基硅烷)”在500°C热解产生的非常弱的深红色发光Si颗粒暴露在空气中90 min时,光致发光突然切换到强烈的天蓝色(A = 430 nm),量子产率为20-25%,在室温下的普通有机溶剂中寿命短~5 ns,因为硅氧烷类, 多层硅片结构。

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