Groome Chloe, Roh Inwhan, Mattox Tracy M, Urban Jeffrey J
Lawrence Berkeley National Laboratory, The Molecular Foundry, One Cyclotron Road, Berkeley, California 94720, United States.
ACS Omega. 2017 May 23;2(5):2248-2254. doi: 10.1021/acsomega.7b00263. eCollection 2017 May 31.
Lanthanum hexaboride (LaB) is notable for its thermionic emission and mechanical strength and is being explored for its potential applications in IR-absorbing photovoltaic cells and thermally insulating window coatings. Previous studies have not investigated how the properties of LaB change on the nanoscale. Despite interest in the tunable plasmonic properties of nanocrystalline LaB, studies have been limited due to challenges in the synthesis of phase-pure, size-controlled, high-purity nanocrystals without high temperatures or pressures. Here, we report, for the first time, the ability to control particle size and boron content through reaction temperature and heating ramp rate, which allows the effects of size and defects on the vibrational modes of the nanocrystals to be studied independently. Understanding these effects is important to develop methods to fully control the properties of nanocrystalline LaB, such as IR absorbance. In contrast to previous studies on stoichiometric LaB nanocrystals, we report here that boron content and lanthanum vacancies have a greater influence on their vibrational properties than their particle size.
六硼化镧(LaB)因其热电子发射和机械强度而备受关注,目前正在探索其在红外吸收光伏电池和隔热窗涂层中的潜在应用。以往的研究尚未探究LaB的性质在纳米尺度上是如何变化的。尽管人们对纳米晶LaB的可调谐等离子体性质感兴趣,但由于在不使用高温或高压的情况下合成相纯、尺寸可控、高纯度纳米晶体存在挑战,相关研究一直受到限制。在此,我们首次报道了通过反应温度和加热升温速率来控制粒径和硼含量的能力,这使得能够独立研究尺寸和缺陷对纳米晶体振动模式的影响。了解这些影响对于开发全面控制纳米晶LaB性质(如红外吸收率)的方法至关重要。与之前对化学计量比LaB纳米晶体的研究不同,我们在此报告,硼含量和镧空位对其振动性质的影响比粒径更大。