论文标题
生态友好型bismuth基于双钙晶X $ _2 $ nabicl $ _6 $(x = CS,RB,K)用于光电和热电应用:第一原则研究
Eco-friendly Bismuth Based Double Perovskites X$_2$NaBiCl$_6$ (X=Cs, Rb, K) for Optoelectronic and Thermoelectric Applications: A First-Principles Study
论文作者
论文摘要
由于能源短缺以及传统化石燃料发电机制的各种严重不良影响,光伏和热电材料被认为是建造非传统,高效和环保发电投资组合的潜在候选者。基于铅基的钙壶是高效,可用的,可用于此类应用的低成本材料,但是有两个主要的挑战,即化学不稳定和有毒铅浸出的危险,可能会严重影响环境和人类健康。因此,为了寻找无铅的钙钛矿,铅和钠等环保元素的替代可能是一个很好的策略。二晶型具有与铅的电子特性非常相似的电子特性,因此它具有非常有效的钙钛矿。因此,在这里使用第一原理方法探索了双钙质containg bi元素x $ _2 $ nabicl $ _6 $(x = cs,rb,k)。由于紫外线峰(10EV-30EV),低反射(5-7%)和高光学传导率,由于紫外传感器和检测器等光电应用具有吸引力。除了具有诱人的光电特征外,研究的化合物还具有接近统一性的数字,因此对于热电应用来说,这些化合物也很有希望。
Owing to the energy shortages and various severe adverse effects of traditional fossil fuel power generation mechanisms, photovoltaic and thermoelectric materials are considered as the potential candidates for building non-traditional, efficient, and eco-friendly power generation portfolios. Lead-based perovskites have emerged as highly efficient, abundantly available, and low-cost materials for such applications but there are two major challenges i.e. chemical instability and the danger of toxic lead leaching that can badly affect both the environment and human health. Therefore, in search of lead-free perovskites, the replacement of lead with eco-friendly elements like bismuth and sodium may be a good strategy. Bismuth has very similar electronic properties as that of lead so it gives very efficient perovskites. Therefore, double perovskites containg Bi element X$_2$NaBiCl$_6$ (X=Cs, Rb, K) are explored here in terms of the structural, opto-electronic , and thermoelectric properties using the first-principles approach. The materials are attractive for optoelectronic applications such as ultraviolet sensors and detectors due to the prominent absorption peaks in ultraviolet region (10eV-30eV), low reflection (5-7%), and high optical conductivity. In addition to the alluring optoelectronic features, the compounds under study have figure of merit being close to unity so these are also promising for thermoelectric applications.