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1.
利用密度泛函理论(DFT)的B3LYP方法,采用全电子基组6-311+G(d)研究了CuSi6团簇的几何构型和电子结构性质,计算表明CuSi6团簇存在多个能量相近的稳定异构体,且结构中存在多个Cu-Si键,多个低能异构体共存解释了实验中观察到的CuSi6团簇较强的现象.对于CuSi6团簇,计算得到的三个最稳定异构体的垂直电离能,电子亲和能和HOMO-LUMO能隙均相对较大,也表明这三个异构体较为稳定.  相似文献   

2.
任凤竹  罗有华 《物理学报》2008,57(12):7623-7629
采用基于密度泛函理论的第一性原理方法,在多种初始构型下充分考虑自旋多重度,研究了BenLa团簇的平衡几何结构、电子性质和磁性.结果表明:BenLa团簇的基态附近有许多能量非常接近的同分异构体,说明该团簇结构较复杂,对其基态的寻找极具挑战性.BenLa团簇具有磁性且稳定性远高于Ben+1团簇,由此可知通过选择合适的掺杂元素可能得到高稳定性的磁性团簇.Be1 关键词nLa团簇')" href="#">BenLa团簇 平衡几何结构 电子性质和磁性  相似文献   

3.
采用相对论有效原子实势(RECP)近似和密度泛函(B3LYP)方法,选择LANL2DZ基组,优化得到了AunY(n=1—9)二元掺杂团簇稳定的基态结构和电子性质.研究结果表明,掺杂Y原子的AunY(n=1—9)团簇随n的变化,其电离势、电子亲合能和费米能级与Aun(n=2—9)一样具有“奇-偶”振荡效应;团簇离子的稳定性具有“幻数”现象,Au2Y+和Au6Y+比其他团簇离子更稳定,与质谱实验结果一致;同一团簇中,团簇最稳定的异构体(基态)是趋于Y原子有最大的邻近的Au原子数. 关键词: Au-Y团簇 密度泛函 平衡几何结构 电子性质  相似文献   

4.
葛桂贤  井群  曹海宾  杨增强  唐光辉  闫红霞 《物理学报》2011,60(10):103102-103102
采用密度泛函理论中的广义梯度近似(GGA) 对 Run Au和Run 团簇的几何构型进行优化,并对能量、频率、电子性质和磁性质进行了计算. 结果表明,Run Au团簇的最低能量结构可以通过Au原子代替Run+1团簇中的Ru原子生长而成.除了局域的结构畸变,Run Au和Run+1团簇具有相似的几何结构.二阶能量差分、电离势、亲和势和分裂能表明Ru5, Ru8, Ru5Au, Ru8Au 是稳定的团簇,Au的掺杂没有改变Run 的相对稳定性.通过电子性质的分析发现,当Au原子掺杂在Run 中,团簇的化学活性增加,且团簇的能隙主要由电子的配对效应决定;对于大多数团簇来说,Au原子掺杂提高了Run Au的磁矩. 关键词: n Au和Run 团簇')" href="#">Run Au和Run 团簇 几何结构 电子性质  相似文献   

5.
本文利用密度泛函理论研究了AlnCum(n=2-6,m=1-3)团簇的几何结构、稳定性和电子结构.结合能、解离能以及最高占据轨道(HOMO)和最低未占据轨道(LUMO)之间的能隙的分析表明8和20价电子的Al2Cu2和Al6Cu2团簇具有较强的稳定性.通过对团簇的分子轨道和能级结构进行分析,结果表明8和20价电子的Al2Cu2和Al6Cu2团簇的分子轨道与凝胶模型预测的一致,可构成闭合壳层,表现出特别的稳定性.Cu原子定域的3d轨道位于团簇的分子轨道之间,但并未影响团簇分子轨道的分布.  相似文献   

6.
张宝龙  王东红  杨致  刘瑞萍  李秀燕 《物理学报》2013,62(14):143601-143601
利用密度泛函理论对合金团簇(FeCr)n (n≤6)的几何结构、稳定性和磁性进行了系统的研究. 研究结果表明, 对n≤3的合金团簇, 其基态具有共线的反铁磁序; 而对于n≥4 的合金团簇, 其基态具有非共线磁序, 因此在n=4时体系发生了共线磁序向非共线磁序的“相变”. 此外, 虽然3d过渡金属原子中电子的自旋轨道耦合效应比较弱, 但计算结果表明对于某些小尺寸的合金团簇其轨道磁矩不能忽略. 对非共线磁性团簇的成键性质以及产生磁序“相变”的物理起源进行了详细讨论. 关键词n合金团簇')" href="#">(FeCr)n合金团簇 密度泛函理论 非共线磁序 自旋轨道耦合效应  相似文献   

7.
葛桂贤  闫红霞  井群  张建军 《物理学报》2011,60(3):33101-033101
采用密度泛函理论中的广义梯度近似(GGA)对Au n Sc3(n=1—7)团簇的几何构型进行优化,并对能量、频率和电子性质进行了计算.结果表明,与纯金团簇相比,AunSc3 较早出现了立体结构,三角双锥结构的Au2Sc3是AunSc3(n>2)团簇生长的基元;Sc原子的掺杂提高了增强了Au 关键词n Sc3团簇')" href="#">Aun Sc3团簇 几何结构 电子性质  相似文献   

8.
采用基于密度泛函理论的第一性原理方法,在多种初始构型下充分考虑自旋多重度,研究了BenLa团簇的平衡几何结构、电子性质和磁性.结果表明:BenLa团簇的基态附近有许多能量非常接近的同分异构体,说明该团簇结构较复杂,对其基态的寻找极具挑战性.BenLa团簇具有磁性且稳定性远高于Ben+1团簇,由此可知通过选择合适的掺杂元素可能得到高稳定性的磁性团簇.Be17La团簇特别稳定且能隙与主团簇的能隙相当.体系的磁矩主要来自外层未成对的价电子且La元素的贡献是主要的,除BeLa,Be3La团簇的磁矩为3μB外,其余的都为1μB.  相似文献   

9.
钱帅  郭新立  王家佳  余新泉  吴三械  于金 《物理学报》2013,62(5):57803-057803
采用遗传算法, 得到贵金属混合团簇Cun-1Au (n=2–10)的稳态结构, 并采用分别基于静态及含时的密度泛函理论的第一性原理方法计算了团簇的静态极化率和吸收光谱. 由于d电子屏蔽效应的增强, 金原子的引入会导致团簇静态极化率的降低, 但立体的构型能减小这种影响. 基于含时密度泛函理论的第一性原理计算得到的吸收光谱指出, 这种屏蔽效应同时导致共振强度的明显下降. d轨道对跃迁贡献的进一步计算, 指出d轨道成分是团簇的光激发中的主要贡献者, 但d电子的屏蔽作用并不会直接导致在激发中d轨道贡献的提升. 针对固定尺寸体系, Cu6-nAun (n=0–6) 团簇的研究进一步论证了此观点. 计算的光谱与实验值能很好地对应, 并且比其他更早的理论计算更为接近实验值. 关键词: 贵金属混合团簇 静态极化率 B3LYP-TDDFT 吸收光谱  相似文献   

10.
吕瑾  秦健萍  武海顺 《物理学报》2013,62(5):53101-053101
采用密度泛函理论中的广义梯度近似(DFT-GGA)对ConAl (n= 1–8)合金团簇进行了系统的几何、 电子结构和磁性质研究. 研究结果表明Al原子倾向于与Co原子形成最大的成键数, 即Al原子均处在团簇原子拥有最大配位数的位置上. Al掺杂后ConAl团簇的稳定性减弱, 磁性降低. 磁性降低的幅度与实验上对较大ConAlM团簇的磁性检测结果获得了很好地符合. 在所有ConAl团簇的最稳定结构中, 除Co4Al外, Al与近邻Co原子均呈现反铁磁性耦合. 相对于纯Co团簇,非磁性Al元素的掺入以及Al掺杂后Co原子整体自旋极化的减弱 是导致ConAl团簇磁性的降低主要原因. 关键词: nAl合金团簇')" href="#">ConAl合金团簇 几何结构 磁性 自旋极化  相似文献   

11.
The geometrical structure, stability, magnetism, and electronic structure of bimetallic clusters AuM2 and Au2M2, where M are 4d transition metal elements, are investigated systematically by using the first-principles method based on density functional theory. The calculation results show that there is a large amount of low-energy isomers with the very similar structure. AuM2 and Au2M2 clusters display dramatic magnetism. The magnetic moment of the 4d element is either enhanced or weakened with respect to the bulk value, which is largely dependent on the orbital exchange-splitting. Supported by the National Natural Science Foundation of China (Grant Nos. 10674015 and 10604035)  相似文献   

12.
The geometrical structure, stability, magnetism, and electronic structure of bimetallic clusters AuM2 and Au2M2, where M are 4d transition metal elements, are investigated systematically by using the first-principles method based on density functional theory. The calculation results show that there is a large amount of low-energy isomers with the very similar structure. AuM2 and Au2M2 clusters display dramatic magnetism. The magnetic moment of the 4d element is either enhanced or weakened with respect to th...  相似文献   

13.
张川晖  崔航  申江 《中国物理 B》2012,21(10):103102-103102
The structure and the magnetic moment of transition metal encapsulated in a Au 12 cage cluster have been studied by using the density functional theory.The results show that all of the transition metal atoms(TMA) can embed into the Au 12 cage and increase the stability of the clusters except Mn.Half of them have the I h or O h symmetry.The curves of binding energy have oscillation characteristics when the extra-nuclear electrons increase;the reason for this may be the interaction between parity changes of extra-nuclear electrons and Au atoms.The curves of highest occupied molecular orbital-lowest unoccupied molecular orbital(HOMO-LUMO) gap also have oscillation characteristics when the extra-nuclear electrons increase.The binding energies of many M@Au 12 clusters are much larger than that of the pure Au 13 cluster,while the gaps of some of them are less than that of Au 13,so maybe Cr@Au 12,Nb@Au 12,and W@Au 12 clusters are most stable in fact.For magnetic calculations,some clusters are quenched totally,but the Au 13 cluster has the largest magnetic moment of 5 μ B.When the number of extra-nuclear electrons of the encapsulated TMA is even,the magnetic moment of relevant M@Au 12 cluster is even,and so are the odd ones.  相似文献   

14.
张秀荣  杨星  丁迅雷 《中国物理 B》2012,21(9):93601-093601
The structural, electronic, and magnetic properties of transition metal doped platinum clusters MPt6 (M=Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, and Zn) are systematically studied by using the relativistic all-electron density functional theory with the generalized gradient approximation. Most of the doped clusters show larger binding energies than the pure Pt7 cluster, which indicates that the doping of the transition metal atom can stabilize the pure platinum cluster. The results of the highest occupied molecular orbital (HOMO) lowest unoccupied molecular orbital (LUMO) gaps suggest that the doped clusters can have higher chemical activities than the pure Pt7 cluster. The magnetism calculations demonstrate that the variation range of the magnetic moments of the MPt6 clusters is from 0 μB to 7 μB, revealing that the MPt6 clusters have potential utility in designing new spintronic nanomaterials with tunable magnetic properties.  相似文献   

15.
Structural and magnetic properties of small bimetallic clusters like CoMRhN, NiNaN, and NiCuN are determined in the framework of a generalized gradient-corrected approximation to density functional theory. The role of magnetism on the most stable structure and on the energy differences among the low-lying isomers is quantified by comparing magnetic and non-magnetic solutions of the Kohn-Sham equations. The correlation between structure, chemical order, and environment-dependent magnetic properties is discussed.  相似文献   

16.
A systematic study of the X2Aun (X = La, Y, Sc; n = 1–9) clusters are performed by using the density functional theory at TPSS level. The structures, stabilities, electronic, and magnetic properties are investigated in comparison with pure gold clusters. The results show that the transition points of the doped clusters from two-dimensional to three-dimensional structure are obviously earlier than gold clusters. The impurity X atoms tend to occupy the most highly coordinated position and form the largest probable number of bonds with gold atoms. In addition, the impurity atoms can strongly enhance the stabilities of gold clusters. It indicates that the impurity atoms dramatically affect the geometries and stabilities of the Aun clusters. The highest occupied molecular orbital–lowest occupied molecular orbital gap, vertical ionisation potential, and chemical hardness show that the X2Au6 clusters have higher stabilities than the others. In La2Au1–9, Y2Au1–7, and Sc2Au1–4 clusters, the charges transfer from X atoms to the Aun frames. The total magnetic moments of X2Aun clusters exist distinctly odd–even alternation behaviours except for La2Au4 and Sc2Au4 clusters.  相似文献   

17.
采用密度泛函理论中的广义梯度近似方法,对M13M=Fe,Ti)以及M13内掺Au20团簇的几何结构和磁性进行了计算研究.结果表明:M13M13内掺Au20团簇的几何结构在0.006—0.05 nm误差范围内保持着Ih对称性.Fe13团簇最低能态的总磁矩为44 μB,内掺到Au20笼中后形成的Fe13内掺Au20团簇的最低能态总磁矩为38 μB,且Au原子与内掺Fe13团簇之间存在着弱铁磁相互作用.Ti13团簇在总磁矩为6 μB时能量最低,掺入Au20笼后形成的Ti13内掺Au20团簇最低能态总磁矩是4 μB,内表面12个Ti原子与表面Au壳之间是弱铁磁相互作用,而与中心Ti原子之间是弱反铁磁相互作用.由于Au20笼状外壳的影响,Fe13内掺Au20和Ti13内掺Au20团簇中Fe13和Ti13的磁矩比无金壳的Fe13和Ti13团簇的磁矩分别减少了6.81 μB和2.88 μB. 关键词: 几何结构 磁性 密度泛函理论  相似文献   

18.
采用密度泛函理论(density functional theory,DFT)中的广义梯度近似(generalized gradient approximation,GGA)对MPb10M=Ti,V,Cr,Cu,Pd)四种同分异构体的几何结构和磁性进行了计算研究.发现在四种同分异构体中,D4d结构的MPb10M=Ti,V,Cr,Cu,Pd)具有最大的结合 关键词: 几何结构 磁性 密度泛函  相似文献   

19.
Equilibrium geometries, relative stabilities, and magnetic properties of small AunMn (n=1-8) clusters have been investigated using density functional theory at the PW91P86 level. It is found that Mn atoms in the ground state AunMn isomers tend to occupy the most highly coordinated position and the lowest energy structure of AunMn clusters with even n is similar to that of pure Aun+1 clusters, except for n=2. The substitution of Au atom in Aun+1 cluster by a Mn atom improves the stability of the host clusters. Maximum peaks are observed for AunMn clusters at n=2, 4 on the size dependence of second-order energy differences and fragmentation energies, implying that the two clusters possess relatively higher stability. The HOMO-LUMO energy gaps of the ground state AunMn clusters show a pronounced odd-even oscillation with the number of Au atoms, and the energy gap of Au2Mn cluster is the biggest among all the clusters. The magnetism calculations indicate that the total magnetic moment of AunMn cluster, which has a very large magnetic moment in comparison to the pure Aun+1 cluster, is mainly localized on Mn atom.  相似文献   

20.
Geometrical, electronic, and magnetic properties of the Sc-doped gold clusters, AunSc (n=1-8), have been studied using the density-functional theory within the generalized gradient approximation. An extensive structural search shows that the Sc atom in low-energy AunSc isomers tends to occupy the most highly coordinated position. The substitution of a Sc atom for an Au atom in the Aun+1 cluster markedly changes the structure of the host cluster. Moreover, we confirm that the ground-state Au6Sc cluster has a distortion to a lower D2h symmetry. The relative stabilities and electronic properties of the lowest-energy AunSc clusters are analyzed based on the averaged binding energies, second-order energy differences, fragmentation energies, chemical hardnesses, and HOMO-LUMO gaps. It is found that the magic Au3Sc cluster can be perceived as a superatom with high chemical stability and its HOMO-LUMO gap is larger than that of the closed-shell Zr@Au14 cluster. The high symmetry and spin multiplicity of the Au3Sc and Au6Sc clusters are responsible for their large vertical ionization potential and electron affinity. The magnetism calculations indicate that the magnetic moment of the Sc atom in the ground-state AunSc (n=2-8) clusters gradually decreases for even n and is completely quenched for odd n.  相似文献   

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