[1] 郑彧,张伟儒,彭珍珍,等.高纯氮化硅粉合成研究进展[J].硅酸盐通报,2015,34(S1):344-347. [2] 刘雄章.纳米氮化硅粉体的制备及其显微形貌分析[D].杨凌:西北农林科技大学,2018. [3] 赵鑫,王刚,韩建燊,等.氮化温度对直接氮化法制备氮化硅纤维材料显微结构的影响[J].耐火材料,2019,53(6):414-418. [4] 丁德松,周炳卿,部芯芯,等.氮化硅薄膜的热丝化学气相沉积法制备及微结构研究[J].硅酸盐通报,2017,36(2):706-711. [5] 白云瑞,邢鹏飞,金星,等.碳热还原法制备氮化硅陶瓷的研究进展[J].铁合金,2021,52(6):25-30. [6] 刘萍,徐恩霞,谢宏旭,等.氮化硅粉体制备方法研究进展[J].耐火材料,2020,54(5):457-460. [7] 赵万国,古亚军,李发亮,等.催化氮化制备氮化硅粉体[J].硅酸盐通报,2016,35(4):1106-1113+1143. [8] PAVARAJARN V,KIMURA S.Catalytic effects of metals on direct nitridation of silicon[J].Journal of the American Ceramic Society,2001,84(8):1669-1674. [9] PAVARAJARN V,VONGTHAVORN T,PRASERTHDAM P.Enhancement of direct nitridation of silicon by common metals in silicon nitride processing[J].Ceramics International,2005,33(4):675-680. [10] GU Y J,LU L L,ZHANG H J,et al.Nitridation of silicon powders catalyzed by cobalt nanoparticles[J].Journal of the American Ceramic Society,2015,98(6):1762-1768. [11] HUANG J T,ZHANG S W,HUANG Z,et al.Co-catalyzed nitridation of silicon and in-situ growth of α-Si3N4 nanorods[J].Ceramics International,2014,40(7):11063-11070. [12] 古亚军,曹迎楠,李发亮,等.铁纳米颗粒催化氮化硅粉[J].硅酸盐学报,2014,42(12):1585-1590. [13] 古亚军,李发亮,张海军,等.Ni纳米颗粒催化氮化反应制备氮化硅粉体[J].硅酸盐学报,2017,45(1):120-125. [14] LIANG F,LU L,TIAN L L,et al.Catalytic effects of Cr on nitridation of silicon and formation of one-dimensional silicon nitride nanostructure[J].Scientific Reports,2016,6(1):1-9. [15] HAN L,WANG J K,LI F L,et al.Low-temperature preparation of Si3N4 whiskers bonded/reinforced SiC porous ceramics via foam-gelcasting combined with catalytic nitridation[J].Journal of the European Ceramic Society,2018,38(4):1210-1218. [16] HAN L,CHEN Y,CHANG H,et al.One-pot foam-gelcasting/nitridation synthesis of high porosity nano-whiskers based 3D Si3N4 porous ceramics[J].Journal of the European Ceramic Society,2021,41(12):6070-6074. [17] ZHANG H J,WATANABE T,OKUMURA M,et al.Catalytically highly active top gold atom on palladium nanocluster[J].Nature Materials,2011,11(1):49-52. [18] 谢尚栋,孙黎江,朱开阳,等.Ti-Al双金属催化剂制备PEIT共聚酯及其热性能[J].现代纺织技术,2022,31:136-143. [19] 周兴赟,李文绮,李文,等.Pt/Cu双金属纳米颗粒的制备及其催化制氢活性[J].化学通报,2015,78(3):237-241. [20] 王小凤,曹迎楠,孙少瑞,等.Au/Ni双金属纳米颗粒的制备及其催化制氢活性[J].稀有金属材料与工程,2015,44(3):753-758. [21] 黄莎莎,苏亚欣,周夏,等.双金属催化剂Fe-Co/Al-PILC的CH4-SCR脱硝性能[J].高校化学工程学报,2021,35(6):1073-1081. [22] 葛伟萍.合金元素对氮化硅制备的影响与研究[D].昆明:昆明理工大学,2003. [23] 贾碧宏,张锦化,王体珏,等.添加Ti-Si-Fe合金粉对埋碳反应烧结法制备Si3N4结合SiC材料性能的影响[J].耐火材料,2019,53(6):441-444. [24] YANG W L,SHI Z Q,JIN Z H,et al.Effect of oxide additives on catalysis and microstructure of RBSN using low-purity silicon powder as raw materials[J].Materials Science Forum,2011,1386(695):409-412. [25] GUO W M,WU L X,XIE H,et al.Effect of TiO2 additives on nitridation of Si powders[J].Materials Letters,2016,177:61-63. [26] LIU J H,GU Y J,LI F L,et al.Catalytic nitridation preparation of high-performance Si3N4(w)-SiC composite using Fe2O3 nano-particle catalyst:Experimental and DFT studies[J].Journal of the European Ceramic Society,2017,37(15):4467-4474. [27] 古亚军,张海军,李发亮,等.原位合成NiO催化硅粉氮化制备氮化硅[J].机械工程材料,2016,40(6):65-68. [28] 古亚军.催化氮化法制备Si3N4(w)-SiC复合材料及其高温性能研究[D].武汉:武汉科技大学,2016. [29] LIANG F,ZHAO W G,LU L L,et al.Catalytic preparation of Si3N4-bonded SiC refractories and their high-temperature properties[J].Metallurgical and Materials Transactions A,2019,50(1):348-356. [30] 韩磊,赵万国,李发亮,等.Cr2O3催化氮化制备Si3N4/SiC耐火材料及其性能[J].机械工程材料,2018,42(10):72-76. [31] HU H L,ZENG Y P,ZUO K H,et al.Synthesis of porous Si3N4/SiC ceramics with rapid nitridation of silicon[J].Journal of the European Ceramic Society,2015,35(14):3781-3787. [32] HYUGA H,YOSHIDA K,KONDO N,et al.Nitridation enhancing effect of ZrO2 on silicon powder[J].Materials Letters,2008,62(20):3475-3477. [33] HYUGA H,YOSHIDA K,KONDO N,et al.Nitridation behaviour of ZrO2 added silicon powder with different ZrO2 particle sizes[J].Journal of the Ceramic Society of Japan,2009,117(1362):157-161. [34] HYUGA H,ZHOU Y,KUSANO D,et al.Nitridation behaviors of silicon powder doped with various rare earth oxides[J].Journal of the Ceramic Society of Japan,2011,119(1387):251-253. [35] JIN X,XING P F,ZHUANG Y X,et al.Function mechanism of Y2O3 additive in silicon powder nitridation[J].International Journal of Applied Ceramic Technology,2019,16(4):1407-1415. [36] MINASYAN T,LIU L,AGHAYAN M,et al.Mesoporous fibrous silicon nitride by catalytic nitridation of silicon[J].Progress in Natural Science:Materials International,2019,29(2):190-197. [37] ZHAO W G,LIANG F,LIU J H,et al.Enhanced nitridation of silicon powders using in-situ formed La2O3 nanoparticles as catalysts[J].Journal of the Ceramic Society of Japan,2018,126(7):510-515. [38] 赵万国,张海军,段红娟,等.Y2O3纳米颗粒催化氮化Si粉制备Si3N4粉体[J].稀有金属材料与工程,2018,47(S1):99-102. [39] 赵万国.Cr2O3催化氮化法制备Si3N4-SiC复合材料及其高温性能研究[D].武汉:武汉科技大学,2016. [40] KIM H N,KIM M J,PARK Y J,et al.Characterization of porous sintered reaction-bonded silicon nitride containing three different rare-earth oxides[J].Journal of the Korean Ceramic Society,2021,58(1):77-85. |