[1] Iijima S.Helical microtubules of graphitic carbon[J].Nature,1991,354:56-58.
[2] 韩月,严志宇,赵兴,等.纤蛇纹石纳米管的人工合成研究进展[J].化工新型材料,2018,46(5):24-27.
[3] 马国华.蛇纹石结构纳米材料的可控合成与生长机理研究[D].绵阳:中国工程物理研究院,2012.
[4] Loureno M P,Guimares L,Da S,et al.Nanotubes with well-defined structure:single and double walled imogolites[J].Journal of Physical Chemistry C,2014,118(11):5945-5953.
[5] Yucelen G I,Kang D Y,Gyerrero-Ferreira R C,et al.Shaping single walled metal oxide nanotubes from precursors of controlled curvature[J].Nano Letters,2012,12(2):827-832.
[6] Korytkova E N,Pivovarova L N,Drozdova I A,et al.Synthesis of nano-tubular nickel hydrosilicates and nickel-magnesium hydrosilicates under hydrothermal conditions[J].Glass Physics and Chemistry,2005,31(6):797-802.
[7] Lvov Y,Abdullayev E.Functional polymer-clay nanotube composites with sustained release of chemical agents[J].Progress in Polymer Science,2013,38:1690-1719.
[8] 张佳斯.埃洛石纳米管的研究现状[J].辽宁科技学院学报,2019,21(4):8-10.
[9] Luo P,Zhao Y,Zhang B,et al.Study on the adsorption of neutral red from aqueous solution onto halloysite nanotubes[J].Water Research,2010,44(5):1489-1497.
[10] Joussein E,Petit S,Churchman J,et al.Halloysite clay minerals-a review[J].Clay Minerals,2005,40(4):383-426.
[11] Farmer V C,Fraser A R,Tait J M.Synthesis of imogolite:a tubular aluminium silicate polymer[J].Journal of the Chemical Society Chemical Communications,1977,13:13.
[12] Tang Chunjuan,Zhu Jiexin,Wei Xiujuan,et al.Copper silicate nanotubes anchored on reduced graphene oxide for long-life lithium-ion battery[J].Energy Storage Materials,2017,7:152-156.
[13] Andrei A K,Ekaterina K K,Alexandre N,et al.Cation redistribution along the spiral of Ni-doped phyllosilicate nanoscrolls:energy modelling and STEM/EDS study[J].Physical Chemistry Chemical Physics,2019,20(5):719-726.
[14] Foresti E,Hochella M,Kornishi H,et al.Morphological and chemical/physical characterization of Fe-doped synthetic chrysotile nanotubes[J].Advanced Functional Materials,2005,15(6):1009-1016.
[15] Wan Junxi,Wang Zhenghua,Chen Xiangying,et al.Shape-induced enhanced luminescent properties of red phosphors:Sr2MgSi2O7∶Eu3+ nanotubes[J].European Journal of Inorganic Chemistry,2005(20):4031-4034.
[16] Levard C,Rose J,Masion A,et al.Synthesis of large quantities of single-walled aluminogermanate nanotube[J].Journal of the American Chemical Society,2008,136(18):5862-5863.
[17] Kuroda Y,Ito K,Itabashi K,et al.One-step exfoliation of kaolinites and their transformation into nanoscrolls[J].Langmuir,2011,27(5):2028-2035.
[18] Matusik J,Gawel A,Bielanska E,et al.The effect of structural order on nanotubes derived from kaolin-group minerals[J].Clay Miner,2009,57(4):452-464.
[19] Arancibia M N,Escudey M,Ramirez R,et al.Advancements in the synthesis of building block materials:experimental evidence and modeled interpretations of the effect of Na and K on imogolite synthesis[J].The Journal of Physical Chemistry C,2017,121:12658-12668.
[20] Picot P,Liao Y,Barruet E,et al.Exploring hybrid imogolite nanotubes formation via Si/Al stoichiometry control[J].Langmuir,2018,34:13225-13234.
[21] Wei Liu,Perrine C,Carole D G,et al.Influence of the length of imogolite-like nanotubes on their cytotoxicity and genotoxicity toward human dermal cells[J].Chemical Research in Toxicology,2012,25:2513-2522.
[22] Wang Y,Lin F,Shang B,et al.Self-template synthesis of nickel silicate and nickel silicate/nickel composite nanotubes and their applications in wastewater treatment[J].Journal of Colloid & Interface Science,2018,522:191-199.
[23] Cao C Y,Wei F,Qu J,et al.Programmed synthesis of magnetic magnesium silicate nanotubes with high adsorption capacities for lead and cadmium ions[J].Chemistry A European Journal,2013,19(5):1558-1562.
[24] Bahadori E,Vaiano V,Esposito S,et al.Photo-activated degradation of tartrazine by H2O2 as catalyzed by both bare and Fe-doped methyl-imogolite nanotubes[J].Catalysis Today,2017:199-207.
[25] Zhang Aobo,Pan Li,Zhang Haiyan,et al.Effects of acid treatment on the physic-chemical and pore characteristics of halloysite[J].Colloids and Surfaces A,2012,396:182-188.
[26] Mahmoudi R,Kardar P,Arabi A M,et al.Acid-modification and praseodymium loading of halloysite nanotubes as a corrosion inhibitor[J].Applied Clay Science,2019,184:105355-105363.
[27] Tan Daoyong,Yuan Peng,Faiza A B,et al.A comparative study of tubular halloysite and platy kaolinite as carriers for the loading and release of the herbicide amitrole[J].Applied Clay Science,2015,114:190-196.
[28] Kang D Y,Brunelli N A,Yucelen G I,et al.Direct synthesis of single-walled aminoaluminosilicate nanotubes with enhanced molecular adsorption selectivity[J].Nature Communications,2014,5:3233-3245.
[29] Paineau E.Imogolite nanotubes:a flexible nanoplatform with multipurpose applications[J].Applied Sciences,2018,8(10):1921.
[30] Bac B H,Song Y,Kim M H,et al.Surface-modified aluminogermanate nanotube by OPA:synthesis and characterization[J].Inorganic Chemistry Communications,2009,12:1045-1048.
[31] Sankar D,Arnab S,Gautam G,et al.Clay-based nanocomposites as recyclable adsorbent toward Hg(Ⅱ) capture:experimental and theoretical understanding[J].ACS Omega,2018,3(6):6283-6292.