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2S 6 and CuInP 2Se 6 crystals]]>

机译:<![CDATA [分层CUINP中的各向异性热性能和铁电相翻译 2 S 6 和CIZP 2 SE 6 晶体]]]>

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AbstractThermal diffusivity and thermal conductivity have been studied for the layered crystals CuInP2S6, CuInP2Se6from 30?K to 350?K, showing a relevant thermal anisotropy. Heat is much more efficiently transferred within the layers than perpendicular to them. The ferrielectric transition in CuInP2S6is proven to be clearly first order while the ferroelectric one in CuInP2Se6has a weak first order character. The behavior of the thermal conductivity as a function of temperature in the ferroelectric phases shows that heat conduction is phonon driven. Disorder in the paraelectric phases due to hopping motions of Cu ions significantly reduces the thermal conductivity to extremely low values.Highlights?There is a strong thermal anisotropy in diffusivity and conductivity.?Heat is much more efficiently transferred within the layers than perpendicular to them.?Disorder due to Cu hopping motions is responsible for the low thermal conductivity.?The character of the ferroelectric transitions is established.]]>
机译:<![CDATA [ 抽象 已经研究了层状晶体Cuinp S 6 ,CUINP 2 SE 6 从30?K至350?K,显示出相关的热各向异性。在层内比垂直于它们在层内更有效地传递热量。 Cuinp中的铁晶过渡 2 s 6 在铁电的同时清楚地阶其中一个在Cuinp 2 se 6 具有较弱的一阶字符。作为铁电相中温度的函数的导热率的行为表明,热传导是声子驱动的。由于Cu离子的跳跃运动引起的节电阶段的紊乱显着降低了导热率至极低的值。 亮点 扩散和电导率存在强烈的热各向异性。 热量比垂直于它们在图层内更有效地传输。 紊乱到期到Cu Hopp. ING运动负责低导热率。 建立了铁电转换的字符。 ]]>

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