利用阳极氧化方法制备了具有规整的可控孔洞尺寸的多孔Al2O3 膜,并以此模拟实际的催化剂载体制备了负载银催化剂. 采用扫描电镜、能量分散谱、透射电镜、X射线衍射和X射线光电子能谱等手段,研究了多孔阳极氧化铝的孔洞大小对负载的银粒子团聚的影响. 结果表明,载体孔洞尺寸对银粒子团聚可能起到限制作用,而且这种限制作用随载体孔洞尺寸增大而减小. 当载体的孔洞尺寸约为50 nm时,随温度升高银粒子的团聚和生长都不明显;当载体的孔洞尺寸约为200 nm时,随温度升高银粒子发生一定程度的团聚和生长,但孔洞尺寸的限制作用仍存在. 这种载体尺寸的限制作用可以有效地阻止催化剂活性组分的团聚.
参考文献
[1] | Minahan DM.;Hoflund GB. .STUDY OF CS-PROMOTED, ALPHA-ALUMINA-SUPPORTED SILVER ETHYLENE-EPOXIDATION CATALYSTS .1. CHARACTERIZATION OF THE SUPPORT AND AS-PREPARED CATALYST[J].Journal of Catalysis,1996(1):109-115. |
[2] | Bond G C .[J].Surface Science,1985,156(02):966. |
[3] | Che M;Bennett C O .[J].Advances in Catalysis,1989,36:55. |
[4] | Briot P;Auroux A;Jones D;Primet M .[J].Applied Catalysis,1990,59(01):141. |
[5] | Lee J K;Verykios X E;Pitchai R .[J].Applied Catalysis,1989,50(02):171. |
[6] | Cheng S;Clearfield A .[J].Journal of Catalysis,1985,94(02):455. |
[7] | Seyedmonir S R;Plischke J K;Vannice M A;Young H W .[J].Journal of Catalysis,1990,123(02):534. |
[8] | Macleod N;Keel J M;Lambert R M .[J].Catalysis Letters,2003,86(1-3):51. |
[9] | 焦健,潘明虎,薛其坤,包信和.硅表面纳米银团簇的氧助迁移行为[J].催化学报,2003(06):433-436. |
[10] | Tang C C;Fan S S;Li P;de la Chapelle M L Dang H Y .[J].Journal of Crystal Growth,2001,224(1-2):117. |
[11] | Hulteen J C;Martin C R .[J].Journal of Materials Chemistry,1997,7(07):1075. |
[12] | Evans U;Colavita P E;Doescher M S;Schiza M Myrick M L .[J].NANO LETTERS,2002,2(06):641. |
[13] | Xia Z;Riester L;Sheldon B W;Curtin W A Liang J Yin A Xu J M .[J].Reviews on Advanced Materials Science,2004,6(02):131. |
[14] | Bukhtiyarov V I;Prosvirin I P;Kvon R I;Goncharova S N, Bal'zhinimaev B S. .[J].Journal of the Chemical Society,Faraday Transactions,1997,93(13):2323. |
[15] | Bukhtiyarov V I;Carley A F;Dollard L A;Roberts M W .[J].Surface Science,1997,381(2-3):605. |
[16] | Carvalho M C N A;Perez C A;Simo R A;Passos F B Schmal M .[J].An Acad Brasil Cien,2004,76(01):262. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%