Journal of the Chinese Ceramic Society, Volume. 52, Issue 12, 3884(2024)
Research Progress on Synthesis of Aluminum Nitride Powder via Carbon Thermal Reduction
[1] [1] WEI X, ZHANG H, DANG J J, et al. Effects of grain boundary phase distributions on mechanical characteristics of the high thermal conductivity AlN ceramics[J]. Ceram Int, 2024, 50(17): 29632-29641.
[2] [2] JIANG H, WANG X H, LEI W, et al. Effects of two-step sintering on thermal and mechanical properties of aluminum nitride ceramics by impedance spectroscopy analysis[J]. J Eur Ceram Soc, 2019, 39(2/3): 249-254.
[3] [3] KIM J I, KIM J, LEE S M, et al. Low-temperature hot-press sintering of AlN ceramics with MgO-CaO-Al2O3-SiO2 glass additives for ceramic heater applications[J]. Ceram Int, 2022, 48(18): 26022-26027.
[6] [6] LU C Y, ZHANG C Y, XU H T, et al. Constructing a heterogeneous interlayer in relieving the residual stresses for the AlN/Cu brazed joint used in IGBT[J]. Mater Charact, 2023, 199: 112759.
[7] [7] LEI D, HAN K Z, WU Y, et al. High performance Ga2O3 metal-oxide-semiconductor field-effect transistors on an AlN/Si substrate[J]. IEEE J Electron Devices Soc, 2019, 7: 596-600.
[8] [8] JEONG J S, AN Y G. Lifetime and degradation analysis of AgPt alloy thick film/AlN heater for semiconductor wafer annealing[J]. Microelectron Reliab, 2021, 126: 114402.
[9] [9] FU R, CHEN K, AGATHOPOULOS S, et al. Factors which affect the morphology of AlN particles made by self-propagating high-temperature synthesis (SHS)[J]. J Cryst Growth, 2006, 296(1): 97-103.
[12] [12] LEFORT P, BILLY M. Mechanism of AlN formation through the carbothermal reduction of Al2O3 in a flowing N2 atmosphere[J]. J Am Ceram Soc, 1993, 76(9): 2295-2299.
[13] [13] HIRAI S, MIWA T, IWATA T, et al. Formation of AlN by carbothermic reduction of Al2O3 in a flowing N2 atmosphere[J]. JPn Inst Metals, 1989, 53(10): 1035-1040.
[14] [14] FORSLUND B, ZHENG J. Carbothermal synthesis of aluminium nitride at elevated nitrogen pressures: Part II Effect of process parameters on particle size and morphology[J]. J Mater Sci, 1993, 28(12): 3132-3136.
[17] [17] O'DONNELL R G, TRIGG M B. The mechanism of conversion of Al2O3 to AlN via carbothermal synthesis[J]. Micron, 1994, 25(6): 575-579.
[18] [18] ZHOU Z Q, XU Y L, CHEN X M, et al. Preparation of AlN under vacuum by the alumina carbothermal reduction nitridation method[J]. Ceram Int, 2020, 46(4): 4095-4103.
[19] [19] ZHOU Z Q, CHEN X M, ZHAO Z Q, et al. Ab initio and experimental study of the mechanism of alumina carbothermal reduction and nitridation under vacuum[J]. Ceram Int, 2021, 47(19): 27972-27978.
[20] [20] XU Y L, ZHOU Z Q, CHEN X M, et al. Ultrafine AlN synthesis by alumina carbothermal reduction under vacuum: Mechanism and experimental study[J]. Powder Technol, 2021, 377: 843-846.
[21] [21] HE B Y, CHEN X M, DENG P, et al. Ab initio and experimental study on the mechanism of Al4C3 nitridation in vacuum to prepare AlN[J]. Ceram Int, 2022, 48(5): 6977-6984.
[22] [22] Kang M S, Shin K H, Kim D W, et al. Optimisation study for making aluminium nitride using an improved carbothermal reduction- nitridation process[J]. J Ceram Process Res, 2017, 18(12): 848-853.
[23] [23] SUN X N, WANG J B, WANG Z C, et al. Preparation of single phase nano-sized AlN powder by carbothermal reduction and nitridation of hydrothermal synthesized carbon coated -Al2O3 from glucose via fast heating[J]. Ceram Int, 2023, 49(13): 22128-22138.
[24] [24] WANG L Y, ZHANG N. Mechanism and research on preparation of AlN powder by carbon thermal reduction method[J]. IOP Conf Ser: Mater Sci Eng, 2019, 647(1): 012007.
[26] [26] WANG Y M, QIAO L, ZHENG J W, et al. Preparation of AlN with low agglomeration using polyethylene glycol and emulsifier to disperse the ultrafine raw powders[J]. Ceram Int, 2023, 49(1): 1390-1400.
[28] [28] WEN Q, WANG P, ZHENG J W, et al. Carbothermal reduction synthesis of aluminum nitride from Al(OH)3/C/PVB slurries prepared by three-roll mixing[J]. Materials, 2021, 14(6): 1386.
[29] [29] JUNG W S, AHN S K. Preparation of aluminium nitride powder from a (hydroxo)(succinato)aluminium(III) complex[J]. J Mater Chem, 1994, 4(6): 949-953.
[30] [30] AHN S K, OH C W, JUNG W S. Conversion of succinateand adipate-coordinated Al(III) complexes to AlN in N2 and NH3 atmospheres [J]. J Korean Ceram Soc, 1996, 33(4): 455-463.
[31] [31] JUNG W S, AHN S K. Synthesis of aluminum nitride by a modified carbothermal reduction and nitridation method using basic dicarboxylate Al(III) complexes Al(OH)(Cn+2H2nO4)·xH2O (n=3, 6, 8)[J]. J Eur Ceram Soc, 2001, 21(1): 79-85.
[32] [32] XIANG M, ZHOU Y F, XU W T, et al. Hydrothermal-carbothermal synthesis of highly sinterable AlN nanopowders[J]. J Am Ceram Soc, 2017, 100(6): 2482-2491.
[34] [34] MYLINH D T, YOON D H, KIM C Y. Aluminum nitride formation from aluminum oxide/phenol resin solid-gel mixture by carbothermal reduction nitridation method[J]. Arch Metall Mater, 2015, 60(2): 1551-1555.
[35] [35] FUMO D A, JURADO J, SEGADES A M, et al. Combustion synthesis of iron-substituted strontium titanate perovskites[J]. Mater Res Bull, 1997, 32(10): 1459-1470.
[37] [37] CHU A M, QIN M L, RAFI-UD-DIN, et al. Effect of urea on the size and morphology of AlN nanoparticles synthesized from combustion synthesis precursors[J]. J Alloys Compd, 2012, 530: 144-151.
[38] [38] PATHAK L C, RAY A K, DAS S, et al. Carbothermal synthesis of nanocrystalline aluminum nitride powders[J]. J Am Ceram Soc, 1999, 82(1): 257-260.
[39] [39] CHU A M, QIN M L, RAFI-UD-DIN, et al. Citric acid-assisted combustion-carbothermal synthesis of well-distributed highly sinterable AlN nanopowders[J]. J Am Ceram Soc, 2012, 95(8): 2510-2515.
[40] [40] CHU A M, ZHAO Y P, UD-DIN R, et al. Carbon-containing droplet combustion-carbothermal synthesis of well-distributed AlN nanometer powders[J]. J Am Ceram Soc, 2022, 105(10): 5999-6006.
[46] [46] MAO X X, LI J, ZHANG H L, et al. Synthesis of AlN powder by carbothermal reduction-nitridation of alumina/carbon black foam[J]. J Inorg Mater, 2017, 32(10): 1115-1120.
[47] [47] MAO X X, XU Y G, MAO X J, et al. Synthesis of fine AlN powders by foamed precursor-assisted carbothermal reduction-nitridation method[J]. J Inorg Mater, 2019, 34(10): 1123-1127.
[48] [48] CANIKOLU N. Synthesizing of nano-sized AlN powder with alumina balls[J]. J Ceram Process Res, 2021, 22(3): 258-263.
[49] [49] BOUSSEBHA H, MUTLU N, CANIKOLU N, et al. Synthesis of submicron AlN powder using dynamic/thermochemical method[J]. Int J Appl Ceram Technol, 2022, 19(6): 2967-2978.
[50] [50] FORSLUND B, ZHENG J. Carbothermal synthesis of aluminium nitride at elevated nitrogen pressures: Part I Effect of process parameters on conversion rate[J]. J Mater Sci, 1993, 28(12): 3125-3131.
[51] [51] SHAN C, XU J H, SUN X N, et al. Preparation of AlN powder of low oxygen content via carbothermal reduction and nitridation by active gas exchange technique[J]. Ceram Int, 2020, 46(13): 21182-21189.
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YUAN Zhenxia, LI Dahai, XU Jiahao, SAO Yuan, LU Youjun, WANG Yanmin. Research Progress on Synthesis of Aluminum Nitride Powder via Carbon Thermal Reduction[J]. Journal of the Chinese Ceramic Society, 2024, 52(12): 3884
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Received: Jun. 9, 2024
Accepted: Jan. 2, 2025
Published Online: Jan. 2, 2025
The Author Email: Youjun LU (youjunlu518@hotmail.com)