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1.
张传国  杨勇  郝汀  张铭 《物理学报》2015,64(1):18102-018102
利用分子动力学模拟方法研究了CH2基团轰击金刚石(111)面所形成的无定形碳氢薄膜(a-C:H)的生长过程. 结构分析表明, 得到的无定形碳氢薄膜中碳原子的局域结构(如C–C第一近邻数)与其中氢原子的含量密切相关. CH2 基团入射能量的增加会导致得到的薄膜的氢含量降低, 从而改变薄膜中类sp3成键碳原子的比例.  相似文献   

2.
曹涵  刘扬 《波谱学杂志》1989,6(1):71-76
本文用自旋捕捉剂亚硝基叔丁烷(MNP)和2,3,5,6-四甲基亚硝基苯与ESR相结合分别研究了N-溴代琥珀酰亚胺(NBS)光解反应产生的自由基,以及NBS与醇、取代芳烃及烷烃进行光解夺氢反应生成的活泼自由基中间体,结果表明:1.在紫外光用下,NBS分子中的N-Br键发生均裂,产生N-中心自由基并为MNP所捕获.2.对于醇及烷烃,NBS光解产生的Br能夺取叔碳原子上的氢,分别形成叔碳自由基HOR和R,并被ND所捕获.3.与烷烃及醇不同的是:Br不仅能夺取烷基取代苯分子中叔碳原子上的氢,而且还能夺取仲碳原子上的氢,分别形成自由基PhCR2及PhCHR.  相似文献   

3.
刘以良  孔凡杰  杨缤维  蒋刚 《物理学报》2007,56(9):5413-5417
利用密度泛函理论(DFT)对碳原子在镍(111)表面吸附结构进行了计算,得到了吸附能以及态密度 (density of state, DOS)分布,分析了吸附在镍(111)面的碳原子和金刚石(111)面的碳原子的分波态密度(PDOS),结果表明吸附在镍表面的碳原子具有与金刚石表面碳原子相类似的电子结构特点,即两者都存在孤对的和成键的sp3杂化电子,进而发现吸附在镍表面的碳原子极易与金刚石表面相互作用形成稳定的类金刚石几何结构. 关键词: 密度泛函理论 化学吸附 电子结构 金刚石生长  相似文献   

4.
提出了简单、灵敏的测定药物及体液中硫酸氢氯吡格雷含量的荧光新方法。利用荧光法研究了硫酸氢氯吡格雷与茜素红的作用,基于在盐酸介质中硫酸氢氯吡格雷能与茜素红形成离子对化合物,该化合物能被二氯甲烷萃取,当用428 nm波长激发时在550 nm左右能发射较强的荧光。因荧光强度与硫酸氢氯吡格雷浓度在一定范围内存在定量关系,从而建立了测定硫酸氢氯吡格雷含量的新方法。当盐酸溶液的浓度为0.3 mol·L-1时,形成的离子对比较稳定,硫酸氢氯吡格雷浓度在1.0~11.0 μg·mL-1 范围内时离子对荧光强度与硫酸氢氯吡格雷浓度呈良好的线性关系,线性方程为F=53.32+35.01c(μg·mL-1),r=0.994,检出限为0.11 μg·mL-1。硫酸氢氯吡格雷在药物和人血清、尿液中的回收率分别为90.6%~99.3%,104.6%~109.3%,96.3%~105.0%,干扰实验表明常用药物辅料对它的测定没有干扰。用本法测定了硫酸氢氯吡格雷片、人血清及尿样中硫酸氢氯吡格雷含量,结果令人满意。实验结果表明本法快速,灵敏度高,准确度好,可用于实际样品中硫酸氢氯吡格雷含量的测定。  相似文献   

5.
利用密度泛函理论研究锂原子修饰线型碳原子链团簇Li2Cm(m=2—8)的结构及其储氢性能. 结果表明, Li原子可键合于碳链团簇的两端,Li原子本身不发生团聚,氢在Li2Cm (m=2—8)中能以分子形式吸附,每一个Li原子最多可吸附5个氢分子,氢分子的平均吸附能为0.460 ~ 2.276 kcal.mol-1. 其中Li原子修饰C2团簇的质量储氢分数最大,为34.72 wt%,表明了它在常温常压条件下作为储氢材料的可行性.  相似文献   

6.
由于铁电材料在科学研究领域的重要应用,功能铁电材料的设计和机理研究一直是国内外的研究热点。材料的性能离不开结构研究,为了更好的认识和理解一种典型铁电材料-硫酸氢铵的结构和相行为,研究了17GPa压强下硫酸氢铵的高压拉曼光谱。在压力作用下,绝大多数的拉曼谱线向高波数方向移动,并且有两个特征拉曼谱带的强度发生很大的变化(1 018和3 183cm~(-1)),表明硫酸盐与铵离子正四面体的电子云密度发生重构。根据频移-压强曲线关系,得出了硫酸氢铵在6和10.5GPa附近分别存在一阶相变。根据高压下S=O伸缩振动谱带的变化规律,发现了不同相区间氢键的相反作用规律。为AHSO_4系列铁电材料压力作用下结构变化规律提供一定的研究基础。  相似文献   

7.
张变霞  杨春  冯玉芳  余毅 《物理学报》2009,58(6):4066-4071
采用密度泛函方法对铜原子在有限长(5,5)椅型单壁碳纳米管的吸附行为进行了研究.计算结果表明,铜原子吸附在管外壁要比吸附在管内壁能量上更为有利,在管外壁碳原子顶位吸附最佳,属于明显的化学吸附.且用前线轨道理论对其成键特性进行了分析,表明在顶位吸附时主要由铜原子的4s轨道电子与碳纳米管中耦合的σ-π键形成新的σ键.此外还对比计算了两种典型位置电子密度,发现顶位吸附的成键中有更大的电子云重叠.进一步表明在某些情况下铜碳原子可以成键. 关键词: 碳纳米管 铜原子 成键特性  相似文献   

8.
利用密度泛函理论研究锂原子修饰线型碳原子链团簇Li2Cm(m=2-8)的结构及其储氢性能.结果表明,Li原子可键合于碳链团簇的两端,Li原子本身不发生团聚,氢在Li2Cm(m=2-8)中能以分子形式吸附,每一个Li原子最多可吸附5个氢分子,氢分子的平均吸附能为0.460~2.276 kcal·mol-1.其中Li原子修饰C2团簇的质量储氢分数最大,为34.72 wt%,表明了它在常温常压条件下作为储氢材料的可行性.  相似文献   

9.
陈献  程梅娟  吴顺情  朱梓忠 《物理学报》2017,66(10):107102-107102
通过基于密度泛函理论的第一原理计算,系统研究了γ石墨炔衍生物的结构稳定性、原子构型和电子性质.γ石墨炔衍生物的结构是由碳六元环以及连接六元环间的碳链组成,碳链上的碳原子数为N=1—6.研究结果表明,碳链上碳原子数的奇偶性对γ石墨炔衍生物的结构稳定和相应的原子构型、电子结构性质具有很大的影响.其奇偶性规律为:当六元环间的碳原子数为奇数时,体系中的碳链均为双键排布,系统呈现金属性;当六元环间的碳原子数为偶数时,系统中的碳链形式为单、三键交替排列,体系为直接带隙的半导体.直接带隙的存在能够促进光电能的高效转换,预示着石墨炔在光电子器件中的应用优势.N=2,4,6的带隙分布在0.94—0.84 eV之间,带隙的大小与碳链上三键的数量和长度有关.研究表明,将碳原子链引入到石墨烯碳六元环之间,通过控制引入的碳原子个数可以调控其金属和半导体电子特性,为设计和制备基于碳原子的可调控s-p杂化的二维材料和纳米电子器件提供了理论依据.  相似文献   

10.
通过研磨法和共沉淀法成功制得β-环糊精与碳原子数11~15的脂肪族二元酸包合物,并通过傅立叶变换红外光谱(FTIR)、差热分析(DTA)以及X射线衍射(XRD)的方法确证了该包合物为[3]准轮烷结构.上述包合物通过与NaOH作用得到了β-环糊精与脂肪族二元酸双负离子的包合物并通过核磁共振氢谱(1H-NMR)及二维NOSEY谱确认了该包合物同样具有[3]准轮烷结构.  相似文献   

11.
First-principles calculations based on density functional theory are used to investigate the adsorptions and diffusions of carbon atoms on the surface and in the subsurface of Co(200). The preferred site for the carbon atom on the surface is the hollow site, and the preferred site in the subsurface is the octahedral site. There is charge transfer from the surface to the adsorbed carbon atom, and for the most favorable adsorbed structure the charge transfer is largest. Moreover, the energy barriers for the diffusions of carbon atoms on the surface and from the surface into the subsurface and then back to the surface are calculated in detail. The results indicate that the energy barrier for the diffusion of carbon atoms on the surface is comparable to that from the subsurface to the surface. The results imply that both the direct surface nucleation and the surface segregation from Co bulk can be observed in the chemical vapor deposition growth of graphene on Co(200)substrate, which can gain a new insight into the growth mechanism of graphene.  相似文献   

12.
通过Al取代B在B12N12中掺杂,基于密度泛函理论对B6Al6N12的稳定性进行了系统研究.表明在B6Al6N12中,Al和B倾向于相对分开.在最稳定结构中,B原子和Al原子分别处在笼的两半.我们还分析了B12-nAlnN12 (n=0, 6, 12)的电子结构,B12N12的能隙为6.84eV,掺Al后其能隙明显变窄,Al12N12和B6Al6N12的能隙分别为3.91eV和4.08eV.NBO分析表明,B12N12中B/N原子的电荷分别为±1.17,Al12N12中Al/N 原子的电荷分别为±1.85.在B6Al6N12中,B/Al原子上的电荷分别为1.06~1.12和1.86~1.91,N原子上的电荷为-1.18~-1.83.  相似文献   

13.
通过Al取代B在B12N12中掺杂,基于密度泛函理论对B6Al6N12的稳定性进行了系统研究.表明在B6Al6N12中,Al和B倾向于相对分开.在最稳定结构中,B原子和Al原子分别处在笼的两半.我们还分析了B12-nAlnN12 (n=0, 6, 12)的电子结构,B12N12的能隙为6.84eV,掺Al后其能隙明显变窄,Al12N12和B6Al6N12的能隙分别为3.91eV和4.08eV.NBO分析表明,B12N12中B/N原子的电荷分别为±1.17,Al12N12中Al/N 原子的电荷分别为±1.85.在B6Al6N12中,B/Al原子上的电荷分别为1.06~1.12和1.86~1.91,N原子上的电荷为-1.18~-1.83.  相似文献   

14.
By using a linear scaling self-consistent charge, density functional tight-binding (SCC-DFTB) method and an ab intio Dmol3 calculation, the energy and Young's modulus as a function of tube length for (10, 0) single-walled carbon nanotubes (SWCNTs) are investigated. It was found that with increasing the length of SWCNTs the Young's modulus increases rapidly, then, there is a slow increase, which ultimately approaches a constant value after the length is increased to ~20 nm, whereas a reversed variation tendency was found for the average energy of atoms in SWCNTs with a change of the tube length. We found that the characters of the length-dependent energy and Young's modulus stem from the changed Py-DOS of atoms in the ending region of the tube. Here one simple formula is proposed for quantitatively explaining the length-dependent energy and modulus.  相似文献   

15.
用分子动力学方法模拟一种特殊结构Si20 (表面异构的硅十二面体结构)填充到不同管径的扶手椅型碳纳米管中组成复合结构的热稳定性。通过能量分析和定量统计缺陷多边形数量等方法来研究这种结构在碳纳米管中的稳定性和结构演变情况。研究发现Si20的热稳定性和碳纳米管的直径关系密切;其在CNT(15, 15)中的热稳定性最好,当管径逐渐增加时,其热稳定性呈下降趋势;直至管径增加到CNT(21, 21),碳纳米管对Si20的空间限制作用变得很小,以至于不足以维持Si20的稳定。此外,Si原子因热振动替换碳纳米管中C原子而形成十二边形缺陷,这对碳纳米管的热稳定性有着明显的降低作用。  相似文献   

16.
The self-consistent charge density functional based tight-binding method is used to calculate the effect of curvature on the structure, average energy of atoms and Young's modulus of armchair single-wall carbon nanotubes (SWCNTs) under axial strains. We found that as the amount of curvature increases, the average energy of atoms and the Young's modulus decrease and the equilibrium CC distance increases for (7,7) SWCNTs. However, we also found that the average energy of atoms and Young's modulus of (5,5) SWCNTs are weakly affected by increasing the amount of curvature. Our results also show that the average energy of atoms and Young's modulus of smaller diameter armchair nanotubes are smaller than that of the larger diameter ones.  相似文献   

17.
本研究运用第一性原理计算方法,系统地研究了无序碳单层材料不同位点的电子结构及其析氢性能.计算结果显示无序结构中的C-C键相比于石墨烯中的C-C键在26.7%的范围内有不同程度的拉伸或压缩,使得C原子电荷在-0.17~+0.16个电子范围内变化,导致部分C原子电子局域化.电子的局域化增强了C原子的化学活性,从而表现出了较强的吸附性能.我们发现H原子与C原子的键合及析氢性能与C原子间的键角相关.对于三配位的碳原子,其中三个价电子通过sp~2杂化轨道与最邻近的碳原子结合形成较强的共价键,而余下的一个pz轨道电子可以与H原子在垂直于原子层的方向形成较弱的化学键.无序结构可以打破三个sp~2杂化轨道的对称性,进而影响pz轨道与氢的成键.本研究在一定程度上揭示了单层无序碳材料结构-性能的构效关系,为实验上设计特定性能的无序碳功能材料提供理论指导.  相似文献   

18.
Potassium–ion batteries (KIBs) are a new–type of energy storage devices that have attracted increasing attention due to their low cost and the abundant resource of K in the Earth’s crust. Monolayer and multilayer graphene are promising electrode materials for KIBs. Herein, the adsorption and diffusion of potassium atoms on the surface of graphene were studied using the first–principles calculations including the van der Waals interaction. It was determined that K atoms can stably adsorb on the surface of graphene. The climbing image nudged elastic band method was employed to calculate the diffusion barriers of a single K atom and two K atoms on the surface of graphene. The results demonstrated that the diffusion barrier of a single K atom on graphene was low. The interaction between K atoms was considered and it facilitates the K atom diffusion to the second and third nearest–neighbour site of the K adatom, but prevents the K atom diffusion to the far nearest–neighbour site of the K adatom. Moreover, the difference in charge density demonstrates that there was a significant charge transfer from two K adatoms to its nearest–neighbour carbon atoms.  相似文献   

19.
连续碳纤维增强碳化硅材料除了具有碳化硅材料固有的低中子活化性能,低衰变热性能和低氚渗透性能等优点以外,还具有密度低、线性膨胀系数小、高比强度、高比模量、耐高温、抗氧化、抗蠕变、抗热震、耐化学腐蚀、耐盐雾、优良的电磁波吸收特性等一系列优异性能,是各类核工程重要的潜在候选材料。在核聚变工程应用领域,连续碳纤维增强碳化硅材料作为第一壁材料不可避免地会受到各种辐射粒子的影响。研究清楚这些辐射粒子对它的辐照效应对其在核工程领域的安全使用至关重要。采用蒙特卡罗方法与分子动力学方法进行模拟计算,研究了氕、氘、氚和氦四种粒子对连续碳纤维增强碳化硅的辐照效应。SRIM和LAMMPS计算结果表明:当入射原子能量为100 eV,连续碳纤维增强碳化硅中碳的浓度在80%~85%时,氕、氘、氚和氦原子的溅射率存在最小值;入射粒子的种类对溅射率的影响显著,氦原子的溅射率大于氘原子和氚原子,而氘原子和氚原子的溅射率相差不大但均显著大于氕原子;溅射率随入射能量的增加先迅速增加后逐渐减小,氕、氘、氚和氦原子入射能量分别在200,400,600和800 eV时存在溅射率最大值;当氦原子入射能量为100 eV时,溅射率随入射角度的增加而逐渐减少。这些结果对连续碳纤维增强碳化硅材料在核工程上的应用具有一定的参考意义。Continuous carbon fiber reinforced silicon carbide material has the low neutron activation, low decay heat performance and tritium permeability, which are inherent performance of silicon carbide materials. It also has other advantages such as low density, small linear expansion coefficient, specific strength and specific modulus, high temperature resistance, oxidation resistance, creep resistance, thermal shock, resistance to chemical corrosion, salt fog resistance, excellent electromagnetic wave absorption properties, etc. It is an important potential candidate material in various field of nuclear engineering. In the field of nuclear fusion engineering applications, continuous carbon fiber reinforced silicon carbide as the first wall material will inevitably be bombarded by a variety of radiation particles. The radiation effect is critical to its safe use in nuclear engineering. The Monte Carlo method and the molecular dynamics method were used to study the radiation effect of protium, deuterium, tritium and helium on continuous carbon fiber reinforced silicon carbide. The SRIM and LAMMPS simulation results show that when the incident energy is 100 eV and the concentration of carbon in the continuous carbon fiber reinforced silicon carbide is about 80% ~ 85%, the sputtering yield of protium, deuterium, tritium and helium atoms have the minimum values. The kind of incident particle has a significant effect on the sputtering yield. The sputtering yield of helium atoms is larger than that of tritium atoms and deuterium atoms. There is not much difference between the sputtering yield of deuterium atoms and tritium atoms, and both the sputtering yield of deuterium atoms and tritium atoms are larger than that of protium atoms. The sputtering yield initially increases rapidly with the increase of the incident energy and then decreases gradually. The incident energy of the protium, deuterium, tritium and helium atoms has the maximum value of the sputtering yield at 200, 400, 600 and 800 eV, respectively. When the incident energy of helium atoms is 100 eV, the sputtering yield decreases while the increase of the incident angle. These results can provide a certain reference for the application of continuous carbon fiber reinforced silicon carbide materials in nuclear engineering.  相似文献   

20.
Density-functional theory with generalized gradient approximation for the exchange-correlation potential has been used to calculate the structural and electronic properties of Si n C n (n = 10–15) clusters. We find that the Si n C n clusters prefer cagelike structures. An extensive isomer search shows that the lowest-energy arrangements are those in which the silicon atoms and the carbon atoms form two distinct subunits. It is found that the carbon atoms favor to form fullerene-like structure due to the sp 2-like bond. The silicon atoms are trying to cope with an unfavorable sp 2 environment, but distorted tetrahedra still show up somewhere of the cagelike structures. On the basis of the lowest-energy geometries obtained, the binding energy, HOMO–LUMO gap, Mulliken charge, ionization potential and electron affinity of the clusters have been computed and analyzed. An electronic charge transfer from the Si-populated to the C-populated regions is observed.  相似文献   

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