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首页> 外文期刊>Solar Energy >Suggestion for using the thermal stable thermoelectric glasses as a strategy for improvement of photovoltaic system efficiency: Seebeck coefficients of tellurite-vanadate glasses containing antimony oxide
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Suggestion for using the thermal stable thermoelectric glasses as a strategy for improvement of photovoltaic system efficiency: Seebeck coefficients of tellurite-vanadate glasses containing antimony oxide

机译:使用热稳定的热电玻璃作为提高光伏系统效率的策略的建议:含氧化锑的碲酸盐-钒酸盐玻璃的塞贝克系数

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Today, solar energy is one of the most useful renewable energy. But, efficiency of photovoltaic (PV) systems is not enough high. On the other hand, the PV panel output power depends on some factors such as the irradiation (resulting in increasing of panel temperature) and temperature. Researchers are trying to improve the efficiency of solar cells; thus, application of thermal stable thermoelectric materials as thermoelectric coolers (TECs) can improve the PV efficiency. In this work, sample preparation and the study of thermoelectric properties of tri-component 40TeO(2)-(60-x)V2O5-xSb(2)O(3), amorphous materials (with 0 <= x <= 10 in mole%) were done, which can be used in PV systems. The thermoelectric behaVior of the mentioned samples, termed as 40TVSx in continue, were studied by measuring the Seebeck coefficient, S, from 280 to 440 K. For these glassy systems, the variation trend of figure of merit (F) was obtained at typical temperatures 310 K, 370 K and 435 K, to elucidate the suitable candidate for thermoelectric applications; to do this, the Seebeck coefficients, S, (thermoelectric power) at mentioned temperatures was measured, which were ranged from (-591) to (-698)mu V K-1 and show increasing trend with increasing of antimony oxide for all samples. In these samples, the applicability of Helices' equation (S dependency to ln(C-v/1-C-v), which C-v = [V4+]/Vtot is the ratio of the content of reduced vanadium ions) and also Mackenzie's equation (S dependency to In([V5+]/[V4+)) were examined and so justified. The obtained thermoelectric data ascertained the mechanism of electrical conduction as small polaron hopping (SPH), which confirms the previously published dc-electrical output of the same glassy systems. Finally, to introduce the more suitable samples for TEC applications, figure of merit (F) was determined, which show the highest value for 40TVS0 sample as a more suitable option in thermoelectric applications and so in heat releasing part of PV systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:今天,太阳能是最有用的可再生能源之一。但是,光伏(PV)系统的效率不够高。另一方面,PV面板的输出功率取决于某些因素,例如辐照(导致面板温度升高)和温度。研究人员正在努力提高太阳能电池的效率。因此,将热稳定的热电材料用作热电冷却器(TEC)可以提高PV效率。在这项工作中,样品制备和三组分40TeO(2)-(60-x)V2O5-xSb(2)O(3),无定形材料(摩尔比为0 <= x <= 10的材料)的研究%)完成,可用于光伏系统。通过测量塞贝克系数S(从280到440 K)研究了上述样品的热电行为(连续称为40TVSx)。对于这些玻璃状系统,在典型温度下获得了品质因数(F)的变化趋势。 310 K,370 K和435 K,以阐明适用于热电应用的候选材料;为此,在上述温度下测量塞贝克系数S(热电功率),其范围为(-591)至(-698)mu V K-1,并且在所有样品中均显示出随着氧化锑的增加而增加的趋势。 。在这些样本中,Helices方程(对ln(Cv / 1-Cv的S依赖性,其中Cv = [V4 +] / Vtot是还原钒离子含量的比率)的适用性)以及Mackenzie方程(对S的依赖性对In([V5 +] / [V4 +))进行了检查,并证明了这一点。获得的热电数据确定了小的极化子跳跃(SPH)的导电机理,这证实了以前发布的相同玻璃态系统的直流电输出。最后,为了介绍更适合TEC应用的样品,确定了品质因数(F),它显示了40TVS0样品的最高值,这是在热电应用中以及光伏系统放热部分中更合适的选择。 (C)2016 Elsevier Ltd.保留所有权利。

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