Wang Zhongxing, Lv Peng, Becton Matthew, Hong Jiawang, Zhang Liuyang, Chen Xuefeng
State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shanxi 710049, People's Republic of China.
School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, People's Republic of China.
Langmuir. 2020 Oct 13;36(40):12038-12044. doi: 10.1021/acs.langmuir.0c02449. Epub 2020 Oct 4.
As a cutting-edge two-dimensional (2D) material, black phosphorous (BP) has been demonstrating a promising performance in the field of near-field radiative heat transfer (NFRHT) due to the excitation ability of its surface plasmon polaritons. Here, we have systematically demonstrated the effect of mechanical strain on the NFRHT between two separate BP sheets. First-principles calculations predict that a certain amount of mechanical strain (4% along biaxial or 6% along zigzag (ZZ)) can trigger an orthogonal switch of anisotropic optical conductivity by regulating the effective mass of electrons. The mismatched coupling of surface plasmon polaritons between the pristine and strained BP results in a 73% change in NFRHT. The studied mechanically tunable NFRHT unfolds a new degree of freedom for controlling the near-field heat transfer and sheds light on an invaluable approach to designing two-dimensional material-based thermal and electrical applications.
作为一种前沿的二维(2D)材料,黑磷(BP)由于其表面等离激元极化激元的激发能力,在近场辐射传热(NFRHT)领域展现出了有前景的性能。在此,我们系统地展示了机械应变对两个独立黑磷片之间近场辐射传热的影响。第一性原理计算预测,一定量的机械应变(双轴方向4%或锯齿形(ZZ)方向6%)可通过调节电子有效质量触发各向异性光导率的正交切换。原始和应变黑磷之间表面等离激元极化激元的失配耦合导致近场辐射传热变化73%。所研究的机械可调近场辐射传热为控制近场热传递开辟了一个新的自由度,并为设计基于二维材料的热电器件提供了一种宝贵的方法。