Li Ming
School of Physics and Electronic Information, Huaibei Normal University, Huaibei, 235000, China.
Phys Chem Chem Phys. 2017 Feb 15;19(7):5513-5518. doi: 10.1039/c6cp08794a.
As an important property for designing optoelectronic devices, the bandgap E of nanorods is tunable with variety of sizes, D, and lengths, L. Unfortunately, the quantitative description of E(D, L) is still unavailable. To understand the underlying mechanism of the size and length effects on the bandgap of nanorods, based on size-dependent melting temperature model, a quantitative thermodynamic model without an adjustable parameter was established by considering the variation of the surface-to-volume ratio. Both the size and length have prominent effects on E(D, L), and E(D, L) increases with decreasing D and L, where the size confinement is stronger than the length confinement for the blue shift of E(D, L) due to the different effects of size or length on the A/V variation. The model prediction agrees well with the experimental results of CdSe nanorods. In addition, as the model expansion, for nanocrystals with different shapes, the size effect on the bandgap can be sequenced as follows: E(D, L) > E(D) > E(D) at L < D, while E(D) > E(D, L) > E(D) at L > D. The validity of the established model will improve the understanding of the bandgap variations and provide guidelines for designing optoelectronic devices.
作为设计光电器件的一项重要特性,纳米棒的带隙E可随各种尺寸D和长度L进行调节。遗憾的是,目前仍无法对E(D, L)进行定量描述。为了理解尺寸和长度对纳米棒带隙影响的潜在机制,基于尺寸依赖的熔化温度模型,通过考虑表面积与体积比的变化,建立了一个无可调参数的定量热力学模型。尺寸和长度对E(D, L)均有显著影响,且E(D, L)随D和L的减小而增大,由于尺寸或长度对A/V变化的不同影响,对于E(D, L)的蓝移,尺寸限制比长度限制更强。该模型预测与CdSe纳米棒的实验结果吻合良好。此外,作为模型扩展,对于不同形状的纳米晶体,尺寸对带隙的影响可按以下顺序排列:当L < D时,E(D, L) > E(D) > E(D);而当L > D时,E(D) > E(D, L) > E(D)。所建立模型的有效性将增进对带隙变化的理解,并为光电器件设计提供指导。