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941.
Liu JM Wu RH Li DC Zhou P Zheng MM Zeng XY Liu DX Huang XM Zhu GH 《Journal of fluorescence》2006,16(5):625-630
A new method for the determination of trace mercury by solid substrate-room temperature phosphorimetry (SS-RTP) quenching method has been established. In glycine-HCl buffer solution, xylenol orange (XO) can react with Sn4+ to form the complex [Sn(XO)6]4+. [Sn(XO)6]4+ can interact with Fin− (fluorescein anion) to form the ion associate [Sn(XO)6]4+·[(Fin)4]−, which can emit strong and stable room temperature phosphorescence (RTP) on polyamide membrane (PAM). Hg2+ can catalyze H2O2 oxidizing the ion association complex [Sn(XO)6]4+·[(Fin)4]−, which causes the RTP to quench. The ΔIp value is directly proportional to the concentration of Hg2+ in the range of 0.016–1.6 fg spot−1 (corresponding concentration: 0.040–4.0 pg ml−1, 0.40 μl spot−1), and the regression equation of working cure is ΔIp=10.03+83.15 m Hg2+ (fg spot−1), (r=0.9987, n=6) and the detection limit (LD) is 3.6 ag spot−1(corresponding concentration: 9.0×10–15 g ml−1, the sample volume: 0.4 μl). This simple, rapid, accurate method is of high selectivity and good repeatability, and it has been successfully applied to the determination of trace mercury in real samples. The reaction mechanism for catalyzing H2O2 oxidizing the ion association complex ([Sn(XO)6]4+·[(Fin)4]−) SS-RTP quenching method to determine trace mercury is also discussed. 相似文献
942.
S. Ding X. Zhang Q. Wang F. Su S. Li S. Fan S. Zhang J. Chang S. Wang Y. Liu 《Applied physics. B, Lasers and optics》2006,85(1):89-95
The rate equation model of an extracavity Raman laser is deduced for the first time to the best knowledge of the authors. The normalized radiation transfer equations of the extracavity Raman laser are given. The normalized radiation transfer equations and rate equations were solved numerically to find the optimum reflectivity of the output coupler to realize the maximum conversion efficiency at the first Stokes for both the single and double-pass pumping configurations. Also, the pulse duration of the first Stokes was investigated numerically. The rate equations are verified to be a good approximation to the radiation transfer equations for the regime of low Raman gain and long pump pulse duration. Furthermore, it is found that the optimum reflectivity of the first Stokes and the second Stokes threshold are influenced significantly by the minor feedback of the resonator mirror at the second Stokes. PACS 42.55 42.55.Ye; 42.65 42.65.Dr; 02.60 02.60.Lj; 63.20 63.20.-e 相似文献
943.
L.H. Shen X.F. Li J. Zhang Y.M. Ma F. Wang G. Peng Q.L. Cui G.T. Zou 《Applied Physics A: Materials Science & Processing》2006,84(1-2):73-75
High-density hexagonal aluminum nitride (h-AlN) nanowires were synthesized through the direct reaction of Al with nitrogen gas without catalyst and template using a direct arc discharge method. The as-grown AlN nanowires were characterized by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy. The h-AlN nanowires have a diameter in the range 20–70 nm and a length of several tens of micrometers. Vapor–solid growth mechanisms can be employed to explain the formation of the h-AlN nanowires. PACS 81.05.Ea; 81.10.Bk; 81.16.Dn; 68.65.-k; 81.16.-c 相似文献
944.
ZHOU Liuzhu ZHU Yuan GUO Xiaoyong ZHAO Wenwu ZHENG Haiyang Gu Xuejun FANG Li ZHANG Weijun 《中国科学G辑(英文版)》2006,49(2):187-194
Single aerosol particles were measured by matrix-assisted laser desorption/ionization (MALDI) with an aerosol time-of-flight
mass spectrometer (ATOFMS). The inlet to the ATOFMS was coupled with an evaporation/condensation flow cell that allowed matrix
addition by condensation onto the particles. The coated particles entered the ion source through three-stage differentially
pumped capillary inlet and were then ionized by a focused 266 nm Nd:YAG laser. The mass spectra and aerodynamic size of the
single particles can be obtained simultaneously. The on-line matrix addition technique makes it possible to identify biological
aerosols in real-time. 相似文献
945.
利用原子簇模型Fe_4P简化了非晶态合金Fe_(80)P_(20)的局域结构,设计了四方锥、三角双锥、四面体及平面五边形等十几种构型,对其二、四重态分别进行密度泛函(DFT)优化计算,经过频率验证,获得五种稳定构型。从所得优化构型的键长和键级,可以发现原子簇Fe4P较好地反映了非晶态合金Fe_(80)P_(20)的局域结构。考察了各构型间的过渡转化情况,发现二重态构型的稳定性要好于四重态。分析各构型的能量、成键及电子转移情况,发现与P原子成键的Fe原子个数对这些性质影响较为明显。与P原子成键的Fe原子个数越多,体系的能量就越低,越容易存在;P原子的得电子能力随着与其成键Fe原子个数增多而减少,甚至会将失去自身电子转移到金属原子上。同时通过3d轨道布居数,讨论了原子簇的空穴数及磁学性质。 相似文献
946.
947.
基于超分子结构共掺杂纳米复合薄膜的制备与荧光特性 总被引:5,自引:0,他引:5
为改善功能分了的特性,提出一种基于金属纳米粒子-偶氮染料复合物共掺杂超分子结构功能材料的设计新方法.并依照此方法制备出复合材料,观测了其显微结构,测量了其紫外-可见光吸收,研究了该超分子结构复合体系的荧光特性.实验发现,由于金属银纳米粒子的掺杂,使得超分子结构复合体系中功能分子甲基橙在溶液态体系的荧光强度增强近5倍,而在两种不同结构(共混结构和包覆结构)的薄膜态超分子结构体系中,其荧光强度分别被猝灭15%和20%.研究结果表明,复合膜中采用超分子结构完全能够改善功能分子的特性. 相似文献
948.
949.
Chunguang Du Hongyi Chen Shiqun Li 《量子光学学报》2006,12(B08):70-71
Recently, research on left-handed materials (LHMs) has attracted considerable attentions. The LHMs are a kind of metameterial which have negative permittivity and negative permeability, which lead to negative refractive index in a frequency range. The LHMs that have been available so far are in the microwave range and are usually composed of classical particles, such as split-ring resonators. Some quantum phenomena such as spontaneous emission of atoms in the LHMs which are considered to be 'classical background' have also been investigated. Many potential applications of LHMs have been proposed, such as superlenses which, in principle, can achieve arbitrary subwavelength resolution. 相似文献
950.
Fu-li Li Zhang-qi Yin 《量子光学学报》2006,12(B08):75-75
Two atomic clusters, which have NA and Ns two-level atoms, respectively, are placed in a cavity but separated spatially. There is no direct interaction between the atoms. All the atoms interact with a single-mode of the cavity field. Quantum entanglement between the two atomic clusters is investigated for various initial states of the two atomic clusters and the field. When the cavity field is initially in a Fock state, we find that the time evolution of entanglement quasi-periodically oscillates regardless of the initial states of atoms. The oscillation period increases as the initial photon number increases. When all the atoms in both of the atomic clusters are initially in the excited state, we show that there is no entanglement between the atomic clusters with NA = NB = 1 regardless the initial state of the cavity field. However, when either NA or NB is larger than one, we find that the entanglement always exists even for a strong thermal field. In cases with different initial states of the atomic clusters, we notice that the entanglement becomes stronger as number of the atoms increases. When all the atoms in both of the clusters in the ground state, we also find that the entanglement can be enhanced even by a thermal field. We also notice that a single qubit can be entangled with multi-atoms which are initially in the ground state by the cavity field initially being in vacuum, thermal, coherent, and squeezed states. 相似文献