Olawole Olukunle C, De Dilip K, Oyedepo Sunday O, Ezema Fabian I
Department of Physics, Covenant University, Ota, Ogun State, Nigeria.
Sustainable Green Power Technologies, San Antonio, TX, USA.
Sci Rep. 2021 Nov 18;11(1):22503. doi: 10.1038/s41598-021-01546-2.
In this study, five mathematical models were fitted in the absence of space charge with experimental data to find a more appropriate model and predict the emission current density of the graphene-based thermionic energy converter accurately. Modified Richardson Dushman model (MRDE) shows that TEC's electron emission depends on temperature, Fermi energy, work function, and coefficient of thermal expansion. Lowest Least square value of [Formula: see text] makes MRDE most suitable in modelling the emission current density of the graphene-based TEC over the other four tested models. The developed MRDE can be adopted in predicting the current emission density of two-dimensional materials and also future graphene-based TEC response.
在本研究中,在无空间电荷的情况下用实验数据拟合了五个数学模型,以找到更合适的模型并准确预测基于石墨烯的热离子能量转换器的发射电流密度。修正的理查森-杜什曼模型(MRDE)表明,热离子能量转换器的电子发射取决于温度、费米能、功函数和热膨胀系数。[公式:见原文]的最低最小二乘值使MRDE在模拟基于石墨烯的热离子能量转换器的发射电流密度方面比其他四个测试模型更合适。所开发的MRDE可用于预测二维材料的电流发射密度以及未来基于石墨烯的热离子能量转换器的响应。