來自武漢大學力學系的劉澤教授、高恩來副研究員與中國科學院半導體研究所的鄧惠雄研究員合作研究發現,具有高度各項異性結構的磷烯表現出優異的電致驅動性能。向磷烯注入電荷后,其最大驅動應力達7.0 GPa,相應的最大驅動應變高達36.6%,這一致動應變與生物肌肉(20-40%)相當,超過石墨烯(4.7%)7倍。同時,磷烯的最大體積功密度(207.7 J/cm3)比天然肌肉(0.008-0.04 J/cm3)高出三個數量級,比石墨烯(35.3J/cm3)大近6倍。原子和電子結構分析揭示了磷烯具有這種優異電致驅動性能的內在機制。最后,通過力學測試探究了注入的電荷對磷烯力學行為的影響,結果表明在一定的力-電荷載共同作用下磷烯的結構仍保持結構完整。本工作為發展高性能納米電致驅動器提供了理論參考。
該文近期發表于npj Computational Materials 6: 27 (2020),英文標題與摘要如下,點擊左下角“閱讀原文”可以自由獲取論文PDF。
High-performance phosphorene electromechanical actuators
Bozhao Wu, Hui-Xiong Deng, Xiangzheng Jia, Langquan Shui, Enlai Gao* & Ze Liu*
Phosphorene, a two-dimensional material that can be exfoliated from black phosphorus, exhibits remarkable mechanical, thermal, electronic, and optical properties. In this work, we demonstrate that the unique structure of pristine phosphorene endows this material with exceptional quantum-mechanical performance by using first-principles calculations. Upon charge injection, the maximum actuation stress is 7.0 GPa, corresponding to the maximum actuation strain as high as 36.6% that is over seven times larger than that of graphene (4.7%) and comparable with natural muscle (20-40%)。 Meanwhile, the maximum volumetric work density of phosphorene (207.7 J/cm3) is about three orders of magnitude larger than natural muscle (0.008–0.04 J/cm3) and approximately six times larger than graphene (35.3 J/cm3)。 The underlying mechanism of this exceptional electromechanical performance in phosphorene is well revealed from the analysis of atomic structure and electronic structure. Finally, the influence of charge on the mechanical behaviors of phosphorene is examined by mechanical tests, indicating the sufficient structural integrity of phosphorene under the combined electromechanical loading. These findings shed light on phosphorene for promising applications in developing nanoelectromechanical actuators.
責任編輯:pj
-
驅動器
+關注
關注
53文章
8272瀏覽量
147075 -
電荷
+關注
關注
1文章
642瀏覽量
36229
發布評論請先 登錄
相關推薦
石墨烯發現到鳥糞摻雜石墨烯,未來將會如何?
![石墨<b class='flag-5'>烯</b>發現到鳥糞摻雜石墨<b class='flag-5'>烯</b>,未來將會如何?](https://file1.elecfans.com/web3/M00/06/3D/wKgZO2eIo2mAT5LIAAAt1HROLRA627.png)
?石墨烯的基本特性?,制備方法?和應用領域
石墨烯發熱油墨為汽車后視鏡帶來智能電加熱保護
掃描速率對各體系的電化學行為有什么影響
石墨烯和白石墨烯(氮化硼)的作用區別
![石墨<b class='flag-5'>烯</b>和白石墨<b class='flag-5'>烯</b>(氮化硼)的作用區別](https://file.elecfans.com/web2/M00/3F/D6/poYBAGJqO-mASPG4AAAes7JY618194.jpg)
利用HDPlas等離子功能化工藝,可增強CGM動態血糖儀微型傳感器性能
電流流的是正電荷還是負電荷
場強方向是正電荷指向負電荷嗎
高速撞擊下冰球沖擊力學行為及材料響應的實驗與數值模擬研究
![高速撞擊下冰球沖擊<b class='flag-5'>力學行為</b>及材料響應的實驗與數值模擬研究](https://file1.elecfans.com/web2/M00/90/B6/wKgaomTcZGeAJZInAAAfzRiM67Q313.png)
評論