[1] YANG H, ZHU W, SUN S, et al. Preparation of monolithic titania aerogels with high surface area by a sol-gel process combined surface modification[J]. RSC Advances, 2014, 4(62): 32934-32940. [2] 李艳华, 吴一凡, 韩琦. SiO2气凝胶材料增强技术研究进展[J]. 复合材料科学与工程, 2022(8): 117-128. [3] 蒋颂敏, 段小华, 王晓欢, 等. 硅酸铝纤维增强SiO2气凝胶复合材料的力学与隔热性能研究[J]. 玻璃钢/复合材料, 2018(5): 79-83. [4] GERACI A, RECH I, GATTI E, et al. Shared baseline restoration at minimum noise for high resolution spectroscopy[J]. Nuclear Instruments and Methods in Physics Research Section A-Accelerators Spectrometers Detectors and Associated Equipment, 2002, 482(1-2): 441-448. [5] EVEN W R, CROCKER R W, HUNTER M C, et al. Surface and near-surface structure in carbon microcellular materials produced from organic aerogels and aerogels[J]. Journal of Non-Crystalline Solids, 1995, 186: 191-199. [6] CAMPBELL L K, NA B K, KO E I. Synthesis and characterization of titania aerogels[J]. Chemistry of Materials, 1992, 4(6): 1329-1333. [7] ZHU X R, DU A, ZHOU B, et al. Synthesis and characterization of La-based Aerogels[J]. Rare Metal Materials and Engineering, 2016, 45(S1): 98-101. [8] 连孟水. 稀土(La,Ce)-硅复合氧化物气凝胶的制备及其作为镍基催化剂载体在POM反应中的应用[D]. 厦门: 厦门大学, 2018: 15-30. [9] 杜国源. 稀土防辐射材料研究[J]. 兵器材料科学与工程, 1988(8): 85-88. [10] MENG J, LIANG J, WANG L, et al. Preparation and properties of pressing powders for bioactivity pottery doped with rare earth[J]. Journal of Rare Earths, 2007, 25(S2): 208-211. [11] DU A, ZHOU B, XU W, et al. Fabrication of rare-earth-oxide aerogel targets with low density[J]. High Power Laser and Particle Beams, 2015, 27(3): 208-211. [12] YU G Q, ZHAO H Z, ZHANG G D, et al. Preparation of ultrafine perovskite oxide LaMnO3 by supercritical fluid drying[J]. Journal of Rare Earths, 2005, 23(1): 113-117. [13] KREEK K, KRIIS K, MAATEN B, et al. Organic and carbon aerogels containing rare-earth metals: Their properties and application as catalysts[J]. Journal of Non-Crystalline Solids, 2014, 404: 43-48. [14] 于长清, 余悠然, 赵英民, 等. 稀土氧化物RE2O3(RE=La, Ce, Gd, Yb)掺杂氧化钇稳定氧化锆气凝胶相稳定性与晶粒生长分析[J]. 硅酸盐通报, 2020, 39(5): 1620-1626. [15] 余高奇, 赵惠忠, 张光德,等. 超临界流体干燥法制备超细镧锰铝气凝胶研究[J]. 中国稀土学报, 2005, 23(2): 138-143. [16] DU A, ZHOU B, SHEN J. A versatile sol-gel route to monolithic oxidic gels via polyacrylic acid template[J]. New Journal of Chemistry, 2011, 35: 1096-1102. [17] 朱秀榕, 周斌, 杜艾, 等. 溶剂对块体La基气凝胶性能的影响[J]. 强激光与粒子束, 2015, 27(11): 134-139. |