Citation: XU Jing, QIANG Jin-Feng, WANG Rui-Juan, NIU Wen-Jun, SHEN Ming. Controllable Preparation of Rambutan-Shape AlOOH/Al2O3 Nanomaterials with a Composite Soft Template[J]. Acta Physico-Chimica Sinica, 2013, 29(10): 2286-2294. doi: 10.3866/PKU.WHXB201307151
复合软模板法可控制备红毛丹状AlOOH/Al2O3纳米材料
以Al(NO3)3为铝源,尿素为均相沉淀剂, 在聚乙二醇400(PEG4000)-DL-天冬氨酸形成的复合软模板体系中, 通过简单的常压回流方式成功合成出形貌和尺寸较为均一的红毛丹状γ-AlOOH纳米结构, 继而考察了反应物和添加剂用量对前驱体形貌和尺寸的影响, 并对γ-AlOOH纳米结构可能的形成机理进行了探讨. 实验结果表明, 所合成的红毛丹状γ-AlOOH具有球中球的核壳结构, 统计得内球直径约为400 nm, 外壳外径约为600 nm, 密集状态的壳层厚度约为15 nm, 毛刺状凸出物长度可达60 nm以上. 前驱体样品经600℃煅烧5 h后即转变为具有良好形貌继承性的γ-Al2O3, Brunauer-Emmett-Teller (BET) N2-吸附实验表明其比表面积高达299.97 m2·g-1.
English
Controllable Preparation of Rambutan-Shape AlOOH/Al2O3 Nanomaterials with a Composite Soft Template
Using PEG4000-DL-aspartic acid as a composite soft template, Al(NO3)3 as an aluminumsource and urea as an alkali source, homogeneous rambutan-shaped AlOOH nanomaterials were successfully synthesized by a simple heating method under atmospheric conditions. The effects of the concentrations of reactants and additives on the morphology and size of the particles were studied and the possible formation mechanismof the γ-AlOOH nanostructures was explored. The rambutan-like γ-AlOOH particles had a core-shell structure resembling a ball within a ball. Based on the statistical results fromSEMimages of the particles, the ball diameter, external diameter, shell thickness and length of burr-like projections were about 400, 600, 15 and 60 nm, respectively. Results indicate that γ-Al2O3 retained the morphology of the AlOOH precursor following calcination at 600℃ for 5 h. Brunauer-Emmett-Teller (BET) N2-adsorption experiments showed that the specific surface area of rambutan-shaped γ-Al2O3 reached as high as 299.97 m2·g-1.
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-
[1]
(1) Zhang, L. D.; Xie, S. S. Nanomaterials &Nanostructures;Chemical Industry Press: Beijing, 2005. [张立德, 解思深. 纳米材料和纳米结构.北京:化学工业出版社, 2005.]
(1) Zhang, L. D.; Xie, S. S. Nanomaterials &Nanostructures;Chemical Industry Press: Beijing, 2005. [张立德, 解思深. 纳米材料和纳米结构.北京:化学工业出版社, 2005.]
-
[2]
(2) Masuda, K.; Sano, T.; Mizukami, F.; Kuno, K. Appl. Catal. A: Gen. 1995, 133, 59. doi: 10.1016/0926-860X(95)00182-4(2) Masuda, K.; Sano, T.; Mizukami, F.; Kuno, K. Appl. Catal. A: Gen. 1995, 133, 59. doi: 10.1016/0926-860X(95)00182-4
-
[3]
(3) Zhu, Z. F.; Sun, H. J.; Liu, H.; Yang, D.; Zhang, J. Q.; Guo, L.Y. Materials Review 2009, 15, 19. [朱振峰,孙洪军,刘辉,杨冬,张建权,郭丽英. 材料导报, 2009, 15, 19.](3) Zhu, Z. F.; Sun, H. J.; Liu, H.; Yang, D.; Zhang, J. Q.; Guo, L.Y. Materials Review 2009, 15, 19. [朱振峰,孙洪军,刘辉,杨冬,张建权,郭丽英. 材料导报, 2009, 15, 19.]
-
[4]
(4) Fang, X. S.; Ye, C. H.; Peng, X. S.; Wang, Y. H.; Wu, Y. C.;Zhang, L. D. J. Mater. Chem. 2003, 13, 3040. doi: 10.1039/b309193g(4) Fang, X. S.; Ye, C. H.; Peng, X. S.; Wang, Y. H.; Wu, Y. C.;Zhang, L. D. J. Mater. Chem. 2003, 13, 3040. doi: 10.1039/b309193g
-
[5]
(5) Yu, J.; Wang, J.; Li, Z. S.; Li, L.; Liu, Q.; Zhang, M. L.; Liu, L.H. Cryst. Growth Des. 2012, 12, 2872. doi: 10.1021/cg300063p(5) Yu, J.; Wang, J.; Li, Z. S.; Li, L.; Liu, Q.; Zhang, M. L.; Liu, L.H. Cryst. Growth Des. 2012, 12, 2872. doi: 10.1021/cg300063p
-
[6]
(6) Yu, Z.; Du, Y. J. Mater. Res. 1998, 13 (11), 3017.(6) Yu, Z.; Du, Y. J. Mater. Res. 1998, 13 (11), 3017.
-
[7]
(7) Liu, H.; Li, G. J.; Dong, X. N.; Zhu, Z. F. J. Funct. Mater. 2012,43 (10), 1251. [刘辉,李广军,董晓楠, 朱振峰. 功能材料,2012, 43 (10), 1251.](7) Liu, H.; Li, G. J.; Dong, X. N.; Zhu, Z. F. J. Funct. Mater. 2012,43 (10), 1251. [刘辉,李广军,董晓楠, 朱振峰. 功能材料,2012, 43 (10), 1251.]
-
[8]
(8) Peng, X. S.; Zhang, L. D.; Meng, G. W.; Wang, X. F.; Wang, Y.W.; Wang, C. Z.; Wu, G. S. J. Phys. Chem. B 2002, 106,11163. doi: 10.1021/jp026028+(8) Peng, X. S.; Zhang, L. D.; Meng, G. W.; Wang, X. F.; Wang, Y.W.; Wang, C. Z.; Wu, G. S. J. Phys. Chem. B 2002, 106,11163. doi: 10.1021/jp026028+
-
[9]
(9) Zhang, L.; Yao, S. W.; Zhang, W. G.; Wang, H. Z. Acta Phys. -Chim. Sin. 2005, 21 (11), 1254. [张璐,姚素薇,张卫国,王宏智. 物理化学学报, 2005, 21 (11), 1254.] doi: 10.3866/PKU.WHXB20051112(9) Zhang, L.; Yao, S. W.; Zhang, W. G.; Wang, H. Z. Acta Phys. -Chim. Sin. 2005, 21 (11), 1254. [张璐,姚素薇,张卫国,王宏智. 物理化学学报, 2005, 21 (11), 1254.] doi: 10.3866/PKU.WHXB20051112
-
[10]
(10) Hou, H. W.; Xie, Y.; Yang, Q.; Guo, Q. X.; Tan, C. R.Nanotechnollogy 2005, 16, 741. doi: 10.1088/0957-4484/16/6/019(10) Hou, H. W.; Xie, Y.; Yang, Q.; Guo, Q. X.; Tan, C. R.Nanotechnollogy 2005, 16, 741. doi: 10.1088/0957-4484/16/6/019
-
[11]
(11) Qu, L. H.; He, C. Q.; Yang, Y.; He, Y. L.; Liu, Z. M. Mater. Lett.2005, 59, 4034. doi: 10.1016/j.matlet.2005.07.059(11) Qu, L. H.; He, C. Q.; Yang, Y.; He, Y. L.; Liu, Z. M. Mater. Lett.2005, 59, 4034. doi: 10.1016/j.matlet.2005.07.059
-
[12]
(12) Valcárcel, V.; Pérez, A.; Cyrklaff, M.; Guitián, F. Adv. Mater.1998, 10, 1370.(12) Valcárcel, V.; Pérez, A.; Cyrklaff, M.; Guitián, F. Adv. Mater.1998, 10, 1370.
-
[13]
(13) Zhu, H. Y.; Riches, J. D.; Barry, J. C. Chem. Mater. 2002, 14,2086. doi: 10.1021/cm010736a doi: 10.1021/cm010736a(13) Zhu, H. Y.; Riches, J. D.; Barry, J. C. Chem. Mater. 2002, 14,2086. doi: 10.1021/cm010736a doi: 10.1021/cm010736a
-
[14]
(14) Zhang, J.; Liu, S. J.; Lin, J.; Song, H. S.; Luo, J. J.; Elssfah, E.M.; Ammar, E.; Huang, Y.; Ding, X. X.; Gao, J. M.; Qi, S. R.;Tang, C. C. J. Phys. Chem. B 2006, 110, 14249. doi: 10.1021/jp062105f(14) Zhang, J.; Liu, S. J.; Lin, J.; Song, H. S.; Luo, J. J.; Elssfah, E.M.; Ammar, E.; Huang, Y.; Ding, X. X.; Gao, J. M.; Qi, S. R.;Tang, C. C. J. Phys. Chem. B 2006, 110, 14249. doi: 10.1021/jp062105f
-
[15]
(15) Zhang, L.; Zhu, Y. J. J. Phys. Chem. C 2008, 112 (43), 16764.(15) Zhang, L.; Zhu, Y. J. J. Phys. Chem. C 2008, 112 (43), 16764.
-
[16]
(16) Feng, Y. L.; Lu, W. C.; Zhang, L. M.; Bao, X. H.; Yue, B. H.;Lv, Y.; Shang, X. F. Cryst. Growth Des. 2008, 8, 1426. doi: 10.1021/cg7007683(16) Feng, Y. L.; Lu, W. C.; Zhang, L. M.; Bao, X. H.; Yue, B. H.;Lv, Y.; Shang, X. F. Cryst. Growth Des. 2008, 8, 1426. doi: 10.1021/cg7007683
-
[17]
(17) Chen, X. Y.; Zhang, Z. J.; Li, X. L.; Lee, S. W. Solid State Commun. 2008, 145, 368. doi: 10.1016/j.ssc.2007.11.033(17) Chen, X. Y.; Zhang, Z. J.; Li, X. L.; Lee, S. W. Solid State Commun. 2008, 145, 368. doi: 10.1016/j.ssc.2007.11.033
-
[18]
(18) Mazloumi, M.; Attarchi, M.; Lak, A.; Mohajerani, M. S.;Kajbafvala, A.; Zanganeh, S.; Sadrnezhaad, S. K. Mater. Lett.2008, 62, 4184. doi: 10.1016/j.matlet.2008.06.025(18) Mazloumi, M.; Attarchi, M.; Lak, A.; Mohajerani, M. S.;Kajbafvala, A.; Zanganeh, S.; Sadrnezhaad, S. K. Mater. Lett.2008, 62, 4184. doi: 10.1016/j.matlet.2008.06.025
-
[19]
(19) Wu, X. Y.; Wang, D. B.; Hu, Z. S.; Gu, G. H. Mater. Chem. Phys. 2008, 109, 560. doi: 10.1016/j.matchemphys.2008.01.004(19) Wu, X. Y.; Wang, D. B.; Hu, Z. S.; Gu, G. H. Mater. Chem. Phys. 2008, 109, 560. doi: 10.1016/j.matchemphys.2008.01.004
-
[20]
(20) Lee, H. C.; Kim, H. J.; Rhee, C. H.; Lee, K. H.; Lee, J. S.;Chung, S. H. Microporous Mesoporous Mat. 2005, 79, 61. doi: 10.1016/j.micromeso.2004.10.021(20) Lee, H. C.; Kim, H. J.; Rhee, C. H.; Lee, K. H.; Lee, J. S.;Chung, S. H. Microporous Mesoporous Mat. 2005, 79, 61. doi: 10.1016/j.micromeso.2004.10.021
-
[21]
(21) Liu, Q.; Wang, A. Q.; Wang, X. D.; Zhang, T. Microporous Mesoporous Mat. 2007, 100, 35. doi: 10.1016/j.micromeso.2006.10.011(21) Liu, Q.; Wang, A. Q.; Wang, X. D.; Zhang, T. Microporous Mesoporous Mat. 2007, 100, 35. doi: 10.1016/j.micromeso.2006.10.011
-
[22]
(22) Colomban, P. J. Mater. Sci. Lett. 1988, 7, 1324. doi: 10.1007/BF00719972(22) Colomban, P. J. Mater. Sci. Lett. 1988, 7, 1324. doi: 10.1007/BF00719972
-
[23]
(23) Priya, G. K.; Padmaja, P.; Warrier, K. G. K.; Damodaran, A. D.;Aruldhas, G. J. Mater. Sci. Lett. 1997, 16, 1584. doi: 10.1023/A:1018568418302(23) Priya, G. K.; Padmaja, P.; Warrier, K. G. K.; Damodaran, A. D.;Aruldhas, G. J. Mater. Sci. Lett. 1997, 16, 1584. doi: 10.1023/A:1018568418302
-
[24]
(24) Wickersheim, K. A.; Korpi, G. K. J. Chem. Phys. 1965, 42,579. doi: 10.1063/1.1695976(24) Wickersheim, K. A.; Korpi, G. K. J. Chem. Phys. 1965, 42,579. doi: 10.1063/1.1695976
-
[25]
(25) Ram, S. Infrared Phys. Technol. 2001, 42, 547. doi: 10.1016/S1350-4495(01)00117-7(25) Ram, S. Infrared Phys. Technol. 2001, 42, 547. doi: 10.1016/S1350-4495(01)00117-7
-
[26]
(26) Shek, C. H.; Lai, J. K. L.; Gu, T. S.; Lin, G. M. Nanostructure Mater. 1997, 8 (5), 605.(26) Shek, C. H.; Lai, J. K. L.; Gu, T. S.; Lin, G. M. Nanostructure Mater. 1997, 8 (5), 605.
-
[27]
(27) Liu, P. S.; Ma, X. M. Detection Method of Porous Materials;Metallurgical Industry Press: Beijing, 2006. [刘培生, 马晓明,多孔材料检测方法. 北京: 冶金工业出版社, 2006.]
(27) Liu, P. S.; Ma, X. M. Detection Method of Porous Materials;Metallurgical Industry Press: Beijing, 2006. [刘培生, 马晓明,多孔材料检测方法. 北京: 冶金工业出版社, 2006.]
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