金属导热理论的研究进展与前沿问题

[1]

Shah R K, Sekulic D P 2003 Fundamentals of Heat Exchanger Design (John Wiley & Sons

[2]

Rajagopal M C, Chang H C, Man T, Kuntumalla G, Meng Y, Sundar S, Zhao H, Salapaka S, Shao C, Ferreira P, Miljkovic N, Sinha S 2019 Int. J. Heat Mass Transf. 143 118497Google Scholar

[3]

Lu D, Wong C 2009 Materials for Advanced Packaging (Vol. 181) (Springer

[4]

Kittel C 2005 Introduction to Solid State Physics (New York: John Wiley & Sons, inc

[5]

Jones W, March N H 1985 Theoretical Solid State Physics (Vol. 35) (Courier Corporation

[6]

Tritt T M ed 2005 Thermal Conductivity: Theory, Properties, and Applications (New York: Springer

[7]

Franz R, Wiedemann G 1853 Ann. Phys. 165 497Google Scholar

[8]

Lorenz L 1881 Ann. Phys. 249 422Google Scholar

[9]

Drude P 1900 Ann. Phys. 306 566Google Scholar

[10]

Sommerfeld A 1928 Z. Phys. 47 43Google Scholar

[11]

Butler W H, Williams R K 1978 Phys. Rev. B 18 6483Google Scholar

[12]

Lang H N D, Kempen H V, Wyder P 1978 J. Phys. F 8 L39Google Scholar

[13]

Williams R K, Yarbrough D W, Masey J W, Holder T K, Graves R S 1981 J. Appl. Phys. 52 5167Google Scholar

[14]

Williams R K, Graves R S, Hebble T L, McElroy D L, Moore J P 1982 Phys. Rev. B 26 2932Google Scholar

[15]

Williams R K, Butler W H, Graves R S, Moore J P 1983 Phys. Rev. B 28 6316Google Scholar

[16]

Klemens P G (Seitz F, Turnbull D ed) 1958 Solid State Physics (Academic Press) pp1–98

[17]

Slack G A (Ehrenreich H, et al. ed) 1979 Solid State Physics (Academic Press) pp1–71

[18]

Klemens P G, Williams R K 1986 Int. Metals Rev. 31 197Google Scholar

[19]

Gregg J F, Haar D t 1996 Eur. J. Phys. 17 303Google Scholar

[20]

White G K, Tainsh R J 1960 Phys. Rev. 119 1869Google Scholar

[21]

Wang J L, Wu Z Z, Mao C K, Zhao Y F, Yang J K, Chen Y F 2018 Sci. Rep. 8 4862Google Scholar

[22]

Poncé S, Margine E R, Verdi C, Giustino F 2016 Comput. Phys. Commun. 209 116Google Scholar

[23]

Liu T H, Zhou J, Li M, Ding Z, Song Q, Liao B, Fu L, Chen G 2018 Proc. Natl. Acad. Sci. U. S. A. 115 879Google Scholar

[24]

Chen Y, Ma J, Li W 2019 Phys. Rev. B 99 020305Google Scholar

[25]

Jain A, McGaughey A J H 2016 Phys. Rev. B 93 081206Google Scholar

[26]

Li S, Tong Z, Zhang X, Bao H 2020 Phys. Rev. B 102 174306Google Scholar

[27]

Bao H, Chen J, Gu X, Cao B 2018 ES Energy Environ. 1 16Google Scholar

[28]

Broido D A, Malorny M, Birner G, Mingo N, Stewart D A 2007 Appl. Phys. Lett. 91 231922Google Scholar

[29]

Walker C T, Pohl R O 1963 Phys. Rev. 131 1433Google Scholar

[30]

Bardeen J, Pines D 1955 Phys. Rev. 99 1140Google Scholar

[31]

Rice T M 1965 Ann. Phys. 31 100Google Scholar

[32]

Langer J S 1960 Phys. Rev. 120 714Google Scholar

[33]

Giri A, Tokina M V, Prezhdo O V, Hopkins P E 2020 Mater. Today Phys. 12 100175Google Scholar

[34]

Tong Z, Li S, Ruan X, Bao H 2019 Phys. Rev. B 100 144306Google Scholar

[35]

Wang Y, Lu Z, Ruan X 2016 J. Appl. Phys. 119 225109Google Scholar

[36]

Wen S, Ma J, Kundu A, Li W 2020 Phys. Rev. B 102 064303Google Scholar

[37]

Li S, Tong Z, Shao C, Bao H, Frauenheim T, Liu X 2022 The J. Phys. Chem. Lett. 13 4289Google Scholar

[38]

Su C, Li D, Luo A A, Ying T, Zeng X 2018 J. Alloys Compd. 747 431Google Scholar

[39]

Tong Z, Bao H 2018 Int. J. Heat Mass Transf. 117 972Google Scholar

[40]

Liu Y Z, Zheng B C, Jian Y X, Zhang L, Yi Y L, Li W 2020 Intermetallics 124 106880Google Scholar

[41]

Daeumer M, Sandoval E D, Azizi A, Bagheri M H, Bae I T, Panta S, Koulakova E A, Cotts E, Arvin C L, Kolmogorov A N, Schiffres S N 2022 Acta Mater. 227 117671Google Scholar

[42]

Wang A, Li S, Ying T, Zeng X, Bao H 2023 J. Appl. Phys. 133 015101Google Scholar

[43]

Li C, Ravichandran N K, Lindsay L, Broido D 2018 Phys. Rev. Lett. 121 175901Google Scholar

[44]

Kundu A, Ma J, Carrete J, Madsen G K H, Li W 2020 Mater. Today Phys. 13 100214Google Scholar

[45]

Li S, Wang A, Hu Y, Gu X, Tong Z, Bao H 2020 Mater. Today Phys. 15 100256Google Scholar

[46]

Yang J Y, Zhang W, Xu C, Liu J, Liu L, Hu M 2020 Int. J. Heat Mass Transf. 152 119481Google Scholar

[47]

Kundu A, Yang X, Ma J, Feng T, Carrete J, Ruan X, Madsen G K H, Li W 2021 Phys. Rev. Lett. 126 115901Google Scholar

[48]

Liu Z, Luo T 2021 Appl. Phys. Lett. 118 043102Google Scholar

[49]

Moore A L, Shi L 2014 Mater. Today 17 163Google Scholar

[50]

Cahill D G, Braun P V, Chen G, Clarke D R, Fan S, Goodson K E, Keblinski P, King W P, Mahan G D, Majumdar A, Maris H J, Phillpot S R, Pop E, Shi L 2014 Appl. Phys. Rev. 1 011305Google Scholar

[51]

Chen G 2005 Nanoscale Energy Transport and Conversion: A Parallel Treatment of Electrons, Molecules, Phonons, and Photons (Oxford: Oxford University Press

[52]

Mayadas A F, Shatzkes M 1970 Phys. Rev. B 1 1382Google Scholar

[53]

Nath P, Chopra K L 1974 Thin Solid Films 20 53Google Scholar

[54]

Kelemen F 1976 Thin Solid Films 36 199Google Scholar

[55]

Kumar S, Vradis G C 1994 J. Heat Transfer 116 28Google Scholar

[56]

Feng B, Li Z, Zhang X 2009 Thin Solid Films 517 2803Google Scholar

[57]

Zhang Q G, Cao B Y, Zhang X, Fujii M, Takahashi K 2006 Phys. Rev. B 74 134109Google Scholar

[58]

Lin H, Xu S, Li C, Dong H, Wang X 2013 Nanoscale 5 4652Google Scholar

[59]

Sawtelle S D, Reed M A 2019 Phys. Rev. B 99 054304Google Scholar

[60]

Mason S J, Wesenberg D J, Hojem A, Manno M, Leighton C, Zink B L 2020 Phys. Rev. Mater. 4 065003Google Scholar

[61]

Stojanovic N, Maithripala D H S, Berg J M, Holtz M 2010 Phys. Rev. B 82 075418Google Scholar

[62]

Wang H, Liu J, Zhang X, Takahashi K 2013 Int. J. Heat Mass Transf. 66 585Google Scholar

[63]

Cheng Z, Liu L, Xu S, Lu M, Wang X 2015 Sci. Rep. 5 10718Google Scholar

[64]

Kojda D, Mitdank R, Handwerg M, Mogilatenko A, Albrecht M, Wang Z, Ruhhammer J, Kroener M, Woias P, Fischer S F 2015 Phys. Rev. B 91 024302Google Scholar

[65]

Zhao Y, Fitzgerald M L, Tao Y, Pan Z, Sauti G, Xu D, Xu Y-Q, Li D 2020 Nano Lett. 20 7389Google Scholar

[66]

Avery A D, Mason S J, Bassett D, Wesenberg D, Zink B L 2015 Phys. Rev. B 92 214410Google Scholar

[67]

Hu Y, Li S, Bao H 2021 Phys. Rev. B 103 104301Google Scholar

[68]

Dong L, Wu X, Hu Y, Xu X, Bao H 2021 Chin. Phys. Lett. 38 027202Google Scholar

[69]

Huang Y, Zhou J, Wang G, Sun Z 2019 J. Am. Chem. Soc. 141 8503Google Scholar

[70]

Wang A, Li S, Zhang X, Bao H 2022 Phys. Rev. Mater. 6 014009Google Scholar

[71]

Lavasani A, Bulmash D, Das Sarma S 2019 Phys. Rev. B 99 085104Google Scholar

[72]

Yao M, Zebarjadi M, Opeil C P 2017 J. Appl. Phys. 122 135111Google Scholar

[73]

Mao H K, Chen X J, Ding Y, Li B, Wang L 2018 Rev. Mod. Phys. 90 015007Google Scholar

[74]

Bohlin L 1976 Solid State Commun. 19 389Google Scholar

[75]

Giri A, Gaskins J T, Li L, Wang Y S, Prezhdo O V, Hopkins P E 2019 Phys. Rev. B 99 165139Google Scholar

[76]

Gomi H, Yoshino T 2019 Phys. Rev. B 100 214302Google Scholar

[77]

Giri A, Karna P, Hopkins P E 2022 J. Phys. Chem. Lett. 13 10918Google Scholar

[78]

Zhang X, Li S, Wang A, Bao H 2022 Phys. Rev. B 106 094313Google Scholar

[79]

Yang J, Yue S, Hu M 2016 Phys. Rev. B 94 235153Google Scholar