采用基于密度泛函理论(DFT)的平面波赝势(PW-PP)方法,计算了ZrMnu2-xCo2(x=0,0.5,0.75)合金及氢化物的电子结构和生成焓.晶胞体积、生成焓的计算值随Co含量的变化趋势与实验测定结果一致.计算结果表明: Zr4d轨道在Fermi能级处的态密度,H-Zr(2)与H-Mn(6h)的相互作用强度是决定氢化物稳定性的主要因素;合金ZrMn2-xCox的晶胞体积与6h位置原子间相互作用随着Co含量的增加而变化,是影响合金平台氢压的重要因素.
参考文献
[1] | Moriwaki Y,Gamo T,Seri H,Iwaki T.J Less-Common Met,1991; 172-174:1211 |
[2] | Yonezu I,Nasako K,Honda N,Sakai T.J Less-Common Met,1983; 89:351 |
[3] | Shaltiel D,Jacob I,Davidov D.J Less-Common Met,1977; 53:117 |
[4] | Fujitani S,Yonezu I,Saito T,Furukawa N,Akiba E,Hayakawa H,Ono S.J Less-Common Met,1991; 172-174:220 |
[5] | Pourarian F,Sinha V K,Wallace W E,Smith H K.J Less-Common Met,1982; 88:451 |
[6] | Hsu Y S,Perng T P.J Alloys Compd,1995; 227:180 |
[7] | Li G P,Nishimiya N,Satoh H,Kamegashira N.J Alloys Compd,2005; 393:231 |
[8] | Yonezu I,Fu jitani S,Furkawa A,Nasako K,Yonesaki T,Saito T,Furukawa N.J Less-Common Met,1991; 168:201 |
[9] | Moriwaki Y,Gamo T,Shintani A,Iwaki T.Denki Kagaku,1989; 57:137 |
[10] | Komazaki Y,Uchida M,Suda S,Suzuki A,Ono S,Nishimiya N.J Less-Common Met,1983; 89:269 |
[11] | Suzuki A,Nishimiya N,Ono S,Higauo S,Kamino K.Chem Lett,1982; 75 |
[12] | Jian X L,Huang C K,Zheng D S,Wei W L,Guo J.Acta Metall Sin,2906; 42:123(营晓玲,黄存可,郑定山,韦文楼,郭进.金属学报,2006;42:123) |
[13] | Su Q,Li B Q,Zhaug R,Jian X L,Guo J.J Chin Nonferrous Met,2004; 14:1711(苏强,李榜全,张睿,营晓玲,郭进.中国有色金属学报,2004;14:1711) |
[14] | Nietsch T,Rickert A,Schutt E,Doraschke T.Int J Hydrogen Energ,1993; 18:751 |
[15] | Matsumura T,Yukawa H,Morinaga M.J Alloys Compd,1998; 279:192 |
[16] | Li G P,Nishimiya N.J Alloys Compd,2005; 392:274 |
[17] | Segall M D,Lindan P J D,Probert M J,Pickard C J,Hasnip P J,Clark S J,Payne M C.J Phys:Condens Matter,2002; 14:2717 |
[18] | Marlo M,Milman V.Phys Rev,2000; 62 B:2899 |
[19] | Vanderbilt D.Phys Rev,1990; 41B:7892 |
[20] | Monkhorst H J,Pack J D.Phys Rev,1976; 13B:5188 |
[21] | Soubeyroux J L,Pontonnier L,Miraglia S.Z Phys Chem,1993; 179:187 |
[22] | Nakamura H,Nguyen-Manh D,Pettifor D G.J Alloys Compd,1998; 281:81 |
[23] | Maliverney C,Mulhanser M.Kirk-Othmer Encylopedia of Chemical Technology.4th ed.,New York:John Wiley & Sons Inc,1995:838 |
[24] | Hector L G,Herbst J F,Capehart T W.J Alloys Compd,2003; 353:74 |
[25] | Michaelides A,Hu P.J Chem Phys,2000; 112:6006 |
[26] | Kolos W,Roothan C C.J Rev Mod Phys,1960; 32:219 |
[27] | Hu C H,Chen D M,Wang Y M,Yang K.J Alloys Compd,2006; in press |
[28] | Okado Y,Translated by Wu Y K,Miao Y Q.Property of Metallic Hydride and Application.Beijing:Chemical Industry Press,1990:36(大角泰章著;吴永宽,苗艳秋译.金属氢化物的性质与应用.北京:化学工业出版社,1990:36) |
[29] | Van Mal H H,Buschow K H J.J Less-Common Met,1974; 35:65 |
[30] | Zhang R J,Wang Y M,Chen D M,Yang R,Yang K.Acta Mater,2006; 54:465 |
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