[1] R. Saito, M. Fujita, G. Dresselhaus, M.S. Dresselhaus, Appl. Phys. Lett. 60(1992) 2204-2206. [2] P. Kim, L. Shi, A. Majumdar, P.L.McEuen, Phys.Rev. Lett. 87(2001) 215502. [3] M. Fujii, X. Zhang, H. Xie, H. Ago, K. Takahashi, T. Ikuta, H. Abe, T. Shimizu, Phys. Rev. Lett. 95(2005) 065502. [4] C. Yu, L. Shi, Z. Yao, D. Li, A. Majumdar, Nano Lett. 5(2005) 1842-1846. [5] M.T. Pettes, L. Shi, Adv. Funct. Mater. 19(2009) 3918-3925. [6] T.Y. Choi, D. Poulikakos, J. Tharian, U. Sennhauser, Nano Lett. 6(2006) 1589-1593. [7] Z.L. Wang, D.W. Tang, X.B. Li, X.H. Zheng, W.G. Zhang, L.X. Zheng, Y.T. Zhu, A.Z. Jin, H.F. Yang, C.Z. Gu, Appl. Phys. Lett. 91(2007) 123119. [8] T.Y. Choi, D. Poulikakos, J. Tharian, U. Sennhauser, Appl. Phys. Lett. 87(2005) 93-96. [9] E. Pop, D. Mann, Q. Wang, K. Goodson, H. Dai, Nano Lett. 6(2006) 96-100. [10] Q. Li, C. Liu, X. Wang, S. Fan, Nanotechnology 20 (2009) 145702. [11] J.-H. Liu, H.-H. Xie, Y.-D. Hu, X. Zhang, Y.-Y. Zhang, Int. J. Heat Mass Trans. 108(2017) 572-576. [12] P. Li, D. Feng, Y. Feng, X. Liu, M. Xiong, X. Zhang, J. Liu, J. Therm. Sci. 31(2022) 1016-1022. [13] S. Berber, Y.-K. Kwon, D.Tománek, Phys. Rev. Lett. 84(20 0 0) 4613-4616. [14] J.X. Cao, X.H. Yan, Y. Xiao, J.W. Ding, Phys. Rev. B 69 (2004) 205415. [15] G. Zhang, B. Li, J. Chem. Phys. 123(2005) 014705. [16] X.H. Yan, Y. Xiao, Z.M. Li, J. Appl. Phys. 99(2006) 124305. [17] L. Lindsay, D.A. Broido, N. Mingo, Phys. Rev. B 82 (2010) 161402. [18] B. Qiu, Y. Wang, Q. Zhao, X. Ruan, Appl. Phys. Lett. 100(2012) 233105. [19] A. Cao, J. Qu, J. Appl. Phys. 112(2012) 043519. [20] T. Yamamoto, S. Watanabe, K. Watanabe, Phys. Rev. Lett. 92(2004) 075502. [21] J. Wang, J.S. Wang, Appl. Phys. Lett. 88(2006) 111909. [22] M.A. Osman, D. Srivastava, Nanotechnology 12 (2001) 21-24. [23] W. Zhang, Z. Zhu, F. Wang, T. Wang, L. Sun, Z. Wang, Nanotechnology 15 (2004) 936-939. [24] M. Grujicic, G. Cao, W.N. Roy, J. Mater. Sci. 40(2005) 1943-1952. [25] Y. Zhang, L. Xie, J. Zhang, Z. Wu, Z. Liu, J. Phys. Chem. C 111 (2007) 14031-14034. [26] S. Huang, M. Woodson, R. Smalley, J. Liu, Nano Lett. 4(2004) 1025-1028. [27] N.R. Raravikar, P. Keblinski, A.M. Rao, M.S. Dresselhaus, L.S. Schadler,P. M. Ajayan, Phys. Rev. B 66 (2002) 235424. [28] Z. Zhou, L. Ci, L. Song, X. Yan, D. Liu, H. Yuan, Y. Gao, J. Wang, L. Liu, W. Zhou,S. Xie, Y. Du, Y. Mo, Chem. Phys. Lett. 396(2004) 372-376. [29] S. Malola, H. Häkkinen, P. Koskinen, Phys. Rev. B 78 (2008) 153409. [30] Y. Wang, X. Zhang, J. Appl. Phys. 136(2024) 074302. [31] W. Cai, A.L. Moore, Y. Zhu, X. Li, S. Chen, L. Shi, R.S. Ruoff, Nano Lett. 10(2010) 1645-1651. [32] S. Sullivan, A. Vallabhaneni, I. Kholmanov, X. Ruan, J. Murthy, L. Shi, Nano Lett. 17(2017) 2049-2056. [33] J. Xu, Y. Hu, H. Bao, Phys. Rev. Appl. 19(2023) 014007. [34] A. Nasir Imtani, J. Phys. Chem. Solids 74 (2013) 1599-1603. [35] K. Yoshino, T. Kato, Y. Saito, J. Shitaba, T. Hanashima, K. Nagano, S. Chiashi,Y. Homma, ACS Omega 3 (2018) 4352-4356. [36] D.J. Ecsedy, P.G. Klemens, Phys. Rev. B 15 (1977) 5957-5962. [37] J.M. Ziman, Electrons and Phonons, Oxford University Press: Oxford, U.K., 1960. [38] S. Chen, A.L. Moore, W. Cai, J.W. Suk, J. An, C. Mishra, C. Amos, C.W. Magnuson,J. Kang, L. Shi, R.S. Ruoff, ACS Nano 5 (2011) 321-328. [39] H. Li, H. Ying, X. Chen, D.L. Nika, A.I. Cocemasov, W. Cai, A.A. Balandin, S. Chen, Nanoscale 6 (2014) 13402-13408. [40] Y. Feng, J. Zhu, D.-W. Tang, J.Nanosci. Nanotechnol. 15(2015) 3092-3097. [41] Z. Ma, Z. Guo, H. Zhang, T. Chang, AIP Adv. 7(2017) 065104. [42] H. Hamasaki, S. Takimoto, K. Hirahara, Nano Lett. 21(2021) 3134-3138. [43] X. Zhang, W.-X. Zhou, X.-K. Chen, Y.-Y. Liu, K.-Q. Chen, Phys. Lett. A 380 (2016) 1861-1864. |