英语翻译Fig.5 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchical architecture PbTe system.The maroon color depicts the approach of solid solution point defects,red c
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英语翻译Fig.5 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchical architecture PbTe system.The maroon color depicts the approach of solid solution point defects,red c
英语翻译
Fig.5 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchical architecture PbTe system.The maroon color depicts the approach of solid solution point defects,red color depicts the approach of nanostructuring,and green color depicts the mesostructuring.The solid line presents the p-type materials,and the dotted line presents the n-type
materials.
Fig.6 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchical architecture PbSe system.Themaroon color depicts the approach of solid solution point defects,red color depicts the approach of nanostructuring,and green color depicts the mesostructuring.The solid line presents the p-type materials,and the dotted line presents the n-type materials.
Fig.7 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchically architectured PbS system.The maroon color depicts the approach of solid solution point defects,red color depicts the approach of nanostructuring,and green color depicts the mesostructuring.The solid line presents the p-type materials,and the dotted line represents the n-type materials.
英语翻译Fig.5 Temperature dependence of (a) lattice thermal conductivity,and (b) thermoelectric figure-of-merit ZT for the all-scale hierarchical architecture PbTe system.The maroon color depicts the approach of solid solution point defects,red c
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图5(a)为全方位分层体系结构PbTe系统的晶格热导率的温度依存性,(b)为全方位分层体系结构PbTe系统的热电品质因数ZT.栗色的颜色描绘固态溶液点缺陷的方法,红色描绘了纳米结构化的方法,而绿色的颜色描绘了中结构化的方法.实线代表p型材料,而虚线代表n型材料.
图6(a)为全方位分层体系结构PbSe系统的晶格热导率的温度依存性,(b)为全方位分层体系结构PbSe系统的热电品质因数ZT.栗色的颜色描绘固态溶液点缺陷的方法,红色描绘了纳米结构化的方法,而绿色的颜色描绘了中结构化的方法.实线代表p型材料,而虚线代表n型材料.
图7(a)为全方位分层体系结构PbS系统的晶格热导率的温度依存性,(b)为全方位分层体系结构PbS系统的热电品质因数ZT.栗色的颜色描绘固态溶液点缺陷的方法,红色描绘了纳米结构化的方法,而绿色的颜色描绘了中结构化的方法.实线代表p型材料,而虚线代表n型材料.
图5温度依赖的晶格热导率,和(b)热电品质因数成all-scale分层架构PbTe系统。栗色的颜色描绘了固溶体的方法点缺陷,红色描绘了纳米结构的方法,描绘了卟啉和绿色的颜色。实线给出了p型材料,虚线提出了n型
材料。
图6(a)的温度依赖晶格热导率,和(b)热电品质因数的ZT型all-scale硒化铅系统分层架构。Themaroon颜色描绘了固溶体点缺陷的方法,红色描绘了纳米结构的...
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图5温度依赖的晶格热导率,和(b)热电品质因数成all-scale分层架构PbTe系统。栗色的颜色描绘了固溶体的方法点缺陷,红色描绘了纳米结构的方法,描绘了卟啉和绿色的颜色。实线给出了p型材料,虚线提出了n型
材料。
图6(a)的温度依赖晶格热导率,和(b)热电品质因数的ZT型all-scale硒化铅系统分层架构。Themaroon颜色描绘了固溶体点缺陷的方法,红色描绘了纳米结构的方法,描绘了卟啉和绿色的颜色。实线给出了p型材料,虚线介绍了n型材料。
图7(一)晶格热导率,温度的依赖关系和(b)热电品质因数的ZT型all-scale等级架构系统PbS。栗色的颜色描绘了固溶体的方法点缺陷,红色描绘了纳米结构的方法,描绘了卟啉和绿色的颜色。实线给出了p型材料,虚线代表了n型材料。
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