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1.
给出了优化小分子在团簇表面吸附结构的遗传算法.结合经验势函数,搜寻了水分子在(TiO2)n(n=3—6)团簇上可能的吸附方式;利用B3LYP/6-31G**方法对各种吸附结构进行了优化.结果表明水分子主要通过O原子以非解离方式吸附到团簇中配位数较低或位置比较凸出的Ti原子上.分子轨道分析表明,水分子与团簇之间的成键主要来自吸附位Ti原子3s3p轨道的贡献,水分子的轨道保持了气相水分子中的基本特征,但离域化程度增大 关键词: 2团簇')" href="#">TiO2团簇 2O吸附')" href="#">H2O吸附 遗传算法 DFT  相似文献   

2.
给出了优化小分子在团簇表面吸附结构的遗传算法.结合经验势函数,搜寻了水分子在(TiO2)n(n=3-6)团簇上可能的吸附方式;利用B3LYP/6-31G**方法对各种吸附结构进行了优化.结果表明水分子主要通过O原子以非解离方式吸附到团簇中配位数较低或位置比较凸出的Ti原子上.分子轨道分析表明,水分子与团簇之间的成键主要来自吸附位Ti原子3s3p轨道的贡献,水分子的轨道保持了气相水分子中的基本特征,但离域化程度增大.NBO分析表明,Ti原子通过3sp向水中氧原子转移电荷,而水分子又通过轨道离域把电荷反馈到由Ti的3d4s等轨道形成的反键轨道.虽然吸附后水中O,H原子的净电量增加,但O-H键减弱.吸附后水分子的振动频率发生红移.  相似文献   

3.
在密度泛函理论的框架下,采用广义梯度近似(GGA)研究了Eu2Sin(n=1~7)团簇的基态几何结构,系统计算了平均结合能Eb、二阶能量差分△2E、最高占据轨道(HOMO)与最低未占据轨道(LUMO)之间的能隙,并与已有的EuSin(n=2~8)团簇相关数据作对比分析.研究表明:单Eu原子比双Eu原子掺杂的Si团簇具有更高的稳定性,EuSi3、EuSi6、Eu2Si4团簇较相应邻近团簇结构稳定;EumSin(m=1~2,n=l~8)团簇的能隙随着团簇总原子数的增加呈现振荡变化,态密度分析得到能隙振荡变化的原因是S原子的s轨道与Eu原子的p轨道发生了杂化.  相似文献   

4.
运用广义梯度近似的相对论密度泛函理论方法对YSin±(n=7-16)离子团簇的几何结构、稳定性和电子特性进行了系统地数值模拟研究.与中性YSin团簇比较可得到以下结论:除YSi10+和YSi13+阳离子团簇外,YSin±团簇基本都保持了中性YSin团簇的结构框架,这与垂直和绝热电离能的结果本质上是一致的;大多数离子团簇的原子平均束缚能都相对中性团簇有明显增大,表明离子团簇的结构稳定性都有增强,其中阳离子团簇YSin+(n=8, 11和14)和阴离子团簇YSin-(n=9,12和14)比其相邻团簇的稳定性更强.电荷布居分析表明所有团簇中Y原子的HC电荷都在n=15处由正值变为负值,即当Y原子从Sin框架表面位点落入硅笼中形成内嵌结构团簇时,电荷转移方向发生反转.阴离子团簇中电荷转移量普...  相似文献   

5.
GanNm阴离子团簇的结构及稳定性的研究   总被引:4,自引:0,他引:4       下载免费PDF全文
李恩玲  王雪雯  陈贵灿  马红  薛英 《物理学报》2006,55(5):2249-2256
利用密度泛函理论(DFT)对GanN-(n=2—8)和GanN-2 (n=1—7)阴离子团簇的结构及稳定性进行了研究.在B3LYP/6-31G*水平上进行了结构优化和频率分析,得到了GanN-(n=2—8)和GanN-2(n=1—7)阴离子团簇的基态结构.在这些团簇中,原子总数小于等于6的团簇的几何结构为平面结构,原子总数大于6的团簇的几何结构为立体结构;在所研究的团簇中,Ga4N-,Ga6N-,Ga4N-2和Ga5N-2的基态结构较稳定. 关键词: nN-m团簇')" href="#">GanN-m团簇 密度泛函理论(DFT) 几何结构  相似文献   

6.
锂原子修饰B6团簇的储氢性能研究   总被引:1,自引:0,他引:1       下载免费PDF全文
阮文  罗文浪  余晓光  谢安东  伍冬兰 《物理学报》2013,62(5):53103-053103
利用密度泛函理论研究B6和LimB6 (m= 1–2)团簇的结构及其储氢性能. 结果表明, 氢分子在B6团簇的三种可能结构中均发生解离吸附, Li原子在B6团簇表面不发生团聚,每一个Li原子均吸附几个氢分子. 其中以两个Li原子修饰笼形B6团簇吸附完整氢分子数最多,储氢质量分数为20.38%, 氢分子的平均吸附能为1.683 kcal/mol,表明了它在常温常压条件下作为储氢材料的可行性. 关键词: mB6 (m=1-2)团簇')" href="#">LimB6 (m=1-2)团簇 密度泛函理论(DFT) 吸附能 储氢性能  相似文献   

7.
葛桂贤  曹海滨  井群  罗有华 《物理学报》2009,58(12):8236-8242
采用密度泛函理论对H2与Rhnn=1—8)团簇的相互作用进行了系统研究.结果表明, RhnH2体系的最低能量结构是在Rhn团簇最低能量结构的基础上吸附H原子生长而成.吸附H原子没有改变Rhn团簇的结构, 键长是影响Rhn和RhnH2磁矩的主要因素.从优化后的几何结构可以看出吸附后的H2发生断键,表明H2分子发生了解离性吸附.当n≤5,H原子的吸附以桥位为主,当n≥6时,H原子开始出现空位吸附.H原子的吸附提高了Rhn的稳定性和化学活性,较小的吸附能表明H原子易从RhnH2中解离出来.二阶能量差分表明4是RhnH2和Rhn团簇的幻数. 关键词nH2和Rhn团簇')" href="#">RhnH2和Rhn团簇 平衡结构 电子性质  相似文献   

8.
本文利用密度泛函PW91方法研究了Co@Aun(n=1~8)团簇的平衡结构、稳定性和磁矩.结构优化显示Co原子在低能异构体中趋于占据最高配位位置,基态Co@Aun(n=2~6)团簇为二维结构,Co@Au7和Co@Au8转变为三维结构.原子平均结合能、二阶能量差分及HOMO-LUMO能级间隙分析表明掺杂Co原子提高了金团簇的稳定性,改变了金团簇能级间隙的奇偶振荡性,n=5为掺杂团簇的幻数.磁矩的计算揭示Co@Aun团簇的磁性主要源于Co原子的3d轨道.  相似文献   

9.
利用密度泛函理论(DFT)对GanP和GanP2 (n=1—7)团 簇的几何结构、电子态及稳定 性进行了研究. 在B3LYP/6-31G*水平上进行了结构优化和频率分析,得到了Ga nP和GanP2(n=1—7) 团簇的基态结构. 结果表明,n≤ 5团簇的几何结构基本上为平面结构,n > 5的团簇均为立体结构;在GanP2 (n=1—6)团簇中,P-P比Ga-P容易 成键;在GanP和G anP2 (n=1—7) 团簇中,Ga3P, Ga4P, Ga P2, Ga2P2 和 Ga4P2的基态结构最稳定,在所研究的团簇中,稳定性随团簇总原 子数的增大而减小. 关键词: nPm团簇')" href="#">GanPm团簇 密度泛函理论(DFT) 几何结构 电子态  相似文献   

10.
本文运用第一性原理对AlmSin(m=1,2;n=1~6)团簇的结构与性质进行了研究.在BLYP的水平上进行了结构优化和频率分析,得到了团簇的最低能量结构.同时计算和讨论了A1msin团簇的束缚能、总能的二阶能量差分和分裂能以及费米能随原子数的变化.研究结果表明:AlmSin团簇在m+n<4时的几何结构是平面结构,从4个原子开始转为空间的立体结构;除AlSi3和Al2Si2团簇外,AlmSin(m=1,2;n=1~6)团簇的束缚能随原子数增加而减小;分析A1mSin(m=1,2;n=1~6)团簇的二阶能量差分和分裂能发现:在m+n=3,5时,团簇都出现较稳定的结构.  相似文献   

11.
张轶杰  唐春梅  高凤志  王成杰 《物理学报》2014,63(14):147401-147401
采用密度泛函理论中的广义梯度近似研究C6Li吸附H2O分子并将之进行分解的催化过程. 几何优化发现:Li原子最稳定的吸附位置是位于C 原子顶位上方. 研究表明,第一个H2O 分子吸附在C6Li上需要克服1.77 eV的能量势垒,然后分解为H和OH且与Li原子成键. 当吸附第二个H2O分子时,第二个H2O分子需要克服1.2 eV的能量势垒分解为H和OH,其中H与Li原子上的H原子结合成H2,OH则替代Li 原子上的H结合在Li原子上. 因此C6Li 可以作为催化剂将H2O分子进行分解得到H2. 分析可知:C6Li主要是通过Li原子与H2O之间形成的偶极矩作用来吸附H2O 分子,与C60Li12 的储氢机制类似. 研究结果可为储氢材料的制备提供一个新的思路. 关键词: 6')" href="#">C6 Li 2O')" href="#">H2O 密度泛函理论  相似文献   

12.
利用分子动力学模拟研究油水分子在方解石和白云石表面的吸附,分析体系的平衡构型、相对浓度、径向分布函数和吸附能,研究方解石和白云石的亲水性并对比二者差异.根据油水分子吸附规律分析方解石/白云石-油水体系作用机理.研究表明:白云石-油水体系更易达到热力学稳定状态并且体系更加稳定;方解石和白云石表面均能够优先吸附水分子并在表面形成双层结构的水膜.其中,白云石表面对水分子吸附强度大于方解石;稳定吸附过程分为两步:范德华力、静电力和O(CaCO3,CaMg(CO32)-H(H2O)氢键共同影响下水分子向晶体表面移动并吸附形成紧密吸附层;O(H2O)-H(H2O)氢键作用下游离的H2O向晶体表面靠近形成扩散层.从分子尺度解释方解石/白云石亲水特性,为碳酸盐岩储层润湿性研究奠定理论基础.  相似文献   

13.
Michael A Henderson   《Surface science》1998,400(1-3):203-219
The reaction of CO2 and H2O to form bicarbonate (HCO3) was examined on the nearly perfect and vacuum annealed surfaces of TiO2(110) with temperature programmed desorption (TPD), static secondary ion mass spectrometry (SSIMS) and high resolution electron energy loss spectrometry (HREELS). The vacuum annealed TiO2(110) surface possesses oxygen vacancy sites that are manifested in electronic EELS by a loss feature at 0.75 V. These oxygen vacancy sites bind CO2 only slightly more strongly (TPD peak at 166 K) than do the five-coordinated Ti4+ sites (TPD peak at 137 K) typical of the nearly perfect TiO2(110) surface. Vibrational HREELS indicates that CO2 is linearly bound at the latter sites with a νa(OCO) frequency similar to the gas phase value. In contrast, oxygen vacancies dissociate H2O to bridging OH groups which recombine to liberate H2O in TPD at 490 K. No evidence for a reaction between CO2 and H2O is detected on the nearly perfect surface. In sequentially dosed experiments on the vacuum annealed surface at 110 K, CO2 adsorption is blocked by the presence of preadsorbed H2O, adsorbed CO2 is displaced by postdosed H2O, and there is little or no evidence for bicarbonate formation in either case. However, when CO2 and H2O are simultaneously dosed, a new CO2 TPD state is observed at 213 K, and the 166 K state associated with CO2 at the vacancies is absent. SSIMS was used to tentatively assign the 213 K CO2 TPD state to a bicarbonate species. The 213 K CO2 TPD state is not formed if the vacancy sites are filled with OH groups prior to simultaneous CO2+H2O exposure. Sticking coefficient measurements suggest that CO2 adsorption at 110 K is precursor-mediated, as is known to be the case for H2O adsorption on TiO2(110). A model explaining the circumstances under which the proposed bicarbonate species is formed involves the surface catalyzed conversion of a precursor-bound H2O–CO2 van der Waals complex to carbonic acid, which then reacts at unoccupied oxygen vacancies to generate bicarbonate, but falls apart to CO2 and H2O in the absence of these sites. This model is consistent with the conditions under which bicarbonate is formed on powdered TiO2, and is similar to the mechanism by which water catalyzes carbonic acid formation in aqueous solution.  相似文献   

14.
Glycine on Pt(111): a TDS and XPS study   总被引:1,自引:0,他引:1  
The adsorption and desorption of in situ deposited glycine on Pt(111) were investigated with thermal desorption spectroscopy (TDS) and X-ray photoelectron spectroscopy (XPS). Glycine adsorbs intact on Pt(111) at all coverages at temperatures below 250 K. The collected results suggest that the glycine molecules adsorb predominantly in the zwitterionic state both in the first monolayer and in multilayers. Upon heating, intact molecules start to desorb from multilayers around 325 K. The second (and possibly third) layer(s) are somewhat more strongly bound than the subsequent layers. The multilayer desorption follows zero order kinetics with an activation energy of 0.87 eV molecule−1. From the first saturated monolayer approximately half of the molecules desorbs intact with a desorption peak at 360 K, while the other half dissociates before desorption. Below 0.25 monolayer all molecules dissociate upon heating. The dissociation reactions lead to H2, CO2, and H2O desorption around 375 K and CO desorption around 450 K. This is well below the reported gas phase decomposition temperature of glycine, but well above the thermal desorption temperatures of the individual H2, CO2, and H2O species on Pt(111), i.e. the dissociation is catalyzed by the surface and H2, CO2, and H2O immediately desorb upon dissociation. For temperatures above 500 K the remaining residues of the dissociated molecules undergo a series of reactions leading to desorption of, for example, H2CN, N2 and C2N2, leaving only carbon left on the surface at 900 K. Comparison with previously reported studies of this system show substantial agreement but also distinct differences.  相似文献   

15.
We have studied the property of single-walled ZnO nanotubes with adsorbed water molecules, and theoretically designed a new sensor for detecting water molecules using single-walled ZnO nanotubes using a combination of density functional theory and the non-equilibrium Green's function method. Details of the geometric structures and adsorption energies of the H2O molecules on the ZnO nanotube surface have been investigated. Our computational results demonstrate that the formation of hydrogen bonding between the H2O molecules and the ZnO nanotube, and adsorption energies of the H2O molecules on the ZnO nanotube are larger than the adsorption energies of other gas molecules present in the atmospheric environment. Moreover, the current-voltage curves of the ZnO nanotube with and without H2O molecules adsorbed on its surface are calculated, the results of which showed that the H2O molecules form stable adsorption configurations that could lead to the decrease in current. These results suggest that the single-walled ZnO nanotubes are able to detect and monitor the presence of H2O molecules by applying bias voltages.  相似文献   

16.
祁鹏堂  陈宏善 《物理学报》2015,64(23):238102-238102
利用密度泛函理论研究了Li原子修饰的C24团簇的储氢性能. Li原子在C24团簇表面的最佳结合位是五元环. Li原子与C24团簇之间的作用强于Li原子之间的相互作用, 能阻止它们在团簇表面发生聚集. 当Li原子结合到C24表面时, 它们向C原子转移电子后带正电荷. 当氢分子接近这些Li原子时, 在电场作用下发生极化, 通过静电相互作用吸附在Li原子周围. 在Li修饰的C24复合物中, 每个Li原子能吸附两到三个氢分子, 平均吸附能处于0.08到0.13 eV/H2范围内. C24Li6能吸附12个氢分子, 储氢密度达到6.8 wt%.  相似文献   

17.
Zirconium oxide (ZrO2) is one of the leading candidates to replace silicon oxide (SiO2) as the gate dielectric for future generation metal-oxide-semiconductor (MOS) based nanoelectronic devices. Experimental studies have shown that a 1–3 monolayer SiO2 film between the high permittivity metal oxide and the substrate silicon is needed to minimize electrical degradation. This study uses density functional theory (DFT) to investigate the initial growth reactions of ZrO2 on hydroxylated SiO2 by atomic layer deposition (ALD). The reactants investigated in this study are zirconium tetrachloride (ZrCl4) and water (H2O). Exchange reaction mechanisms for the two reaction half-cycles were investigated. For the first half-reaction, reaction of gaseous ZrCl4 with the hydroxylated SiO2 surface was studied. Upon adsorption, ZrCl4 forms a stable intermediate complex with the surface SiO2–OH* site, followed by formation of SiO2–O–Zr–Cl* surface sites and HCl. For the second half-reaction, reaction of H2O on SiO2–O–Zr–Cl* surface sites was investigated. The reaction pathway is analogous to that of the first half-reaction; water first forms a stable intermediate complex followed by evolution of HCl through combination of a Cl atom from the surface site and an H atom from H2O. The results reveal that the stable intermediate complexes formed in both half-reactions can lead to a slow film growth rate unless process parameters are adjusted to lower the stability of the complex. The energetics of the two half-reactions are similar to those of ZrO2 ALD on ZrO2 and as well as the energetics of ZrO2 ALD on hydroxylated silicon. The energetics of the growth reactions with two surface hydroxyl sites are also described.  相似文献   

18.
采用密度泛函理论的wB97XD方法、RDG函数方法和counterpoise correction理论,研究氮气在干酪根C28H14O和氮掺杂干酪根C27H14ON上的吸附特征。结果表明:N2在干酪根上的活性吸附位点为苯环上方中心位置,吸附能在8~10 kJ·mol-1之间,N2和干酪根之间的相互作用主要是范德华相互作用和空间排斥作用。氮掺杂改变了干酪根的构型和电子云分布,导致含氮杂环不再是稳定的活性吸附位点,增强了排斥作用,使吸附能略有减小。研究结果对理解干酪根吸附小分子的特征有重要意义,能够为页岩气的开采提供理论支持。  相似文献   

19.
以CaCl2、K2B4O7和Nd2O3为原料,采用易于工业化、无污染的水溶液法反应合成碱-碱土金属硼酸盐K2O·CaO·4B2O3·12H2O∶Nd3+晶体,利用X射线衍射、红外光谱、扫描电镜、荧光分光度计等现代分析测试手段,对所合成晶体进行了分析和表征.结果表明,所制备的K2O·CaO·4B2O3·12H2O∶Nd3...  相似文献   

20.
采用微扰方法和对角化完全能量矩阵法计算了Al2O3粉末吸附的四角对称[Cu(H2O)6]2+基团的自旋哈密顿参量(g因子g∥,g和超精细结构常数A和A). 计算结果表明用这两种理论方法计算的自旋哈密顿参量很接近,并且都与实验结果比较一致. 表明这2种方法都可用于晶体中3d9离子基团的自旋哈密顿参量的研究,通过计算,我们还获得了[Cu(H2O)6]2+基团四角畸变的大小,并对结果进行了讨论.  相似文献   

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