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首页> 外文期刊>Nanoscale >Synergistic 2D MoSe2@WSe2 nanohybrid heterostructure toward superior hydrogen evolution and flexible supercapacitor
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Synergistic 2D MoSe2@WSe2 nanohybrid heterostructure toward superior hydrogen evolution and flexible supercapacitor

机译:协同2 d MoSe2@WSe2 nanohybrid异质结构向高级氢进化和柔性超级电容器

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Two-dimensional (2D) transition metal dichalcogenide (TMDC) heterostructure is a new age strategy to achieve high electrocatalytic activity and ion storage capacity. The less complex and cost-effective applicability of the large-area TMDC heterostructure (HS) for energy applications require more research. Herein, we report the MoSe2@WSe2 nanohybrid HS electrocatalyst prepared using liquid exfoliated nanocrystals, followed by direct electrophoretic deposition (EPD). The improved catalytic activity is attributed to the exposure of catalytic active sites on the edge of nanocrystals after liquid exfoliation and the synergistic effect arises at HS interfaces between the MoSe2 and WSe2 nanocrystals. As predicted, the HS catalyst achieves a lower overpotential of 158 mV, a smaller Tafel slope of 46 mV dec−1 for a current density of 10 mA cm−2, and is stable for a long time. The flexible symmetric supercapacitor (FSSC) based on the HS catalyst demonstrates the excellent specific capacitance (Csp) of 401 F g−1 at 1 A g−1, 97.20% capacitance retention after 5000 cycles and high flexible stability over 1000 bending cycles. This work presents a less complex and solution-processed efficient catalyst for future electrochemical energy applications.
机译:二维(2 d)过渡金属dichalcogenide TMDC异质结构是一个新的年龄达到高electrocatalytic的策略活动和离子存储容量。复杂的和具有成本效益的适用性大面积TMDC异质结构(HS)的能量应用程序需要更多的研究。报告MoSe2@WSe2 nanohybrid海关electrocatalyst准备使用液体剥落了纳米晶体,其次是直接电泳沉积(环保署)。是由于催化活性的接触网站后纳米晶体边缘的液体剥落和协同效应的产生HS MoSe2和WSe2之间的接口纳米晶体。158 mV的达到一个较低的过电压小塔费尔的斜率46 mV 12月−1电流马密度为10厘米−2,稳定了时间。(FSSC)演示了基于HS催化剂优秀的比电容(Csp)的401 F g−11 g−1,97.20%电容后保留超过1000 5000周期和高灵活稳定弯曲周期。和solution-processed有效的催化剂未来的电化学能源应用。

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