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31.
Doubly tunable sum frequency generation (SFG) spectra demonstrate that the water molecules at gold/electrolyte interface change their orientation with applied potential. At negative potentials, water molecules in the double layer align with their oxygen atom pointing to the solution. As potential became positive to be close to the potential of zero charge (PZC), the SFG signal decreased, suggesting the OH groups of the water molecule are either in random orientation or parallel to the electrode. As potential became more positive than the PZC, the SFG signal increased again with the oxygen-up orientation as same as in the negative potential region, indicating that water molecules interact with the adsorbed sulfate anions. The peak position of the SFG spectra indicates a relatively disordered state of water molecules at the gold electrode surface, in contrast to the previously observed ice-like structure of water at electrolyte/oxide interfaces. 相似文献
32.
X.S. Cai 《Applied Surface Science》2006,252(8):2776-2781
SiGe/Si quantum wells (QWs) with different Boron doping concentrations were grown by molecular beam epitaxy (MBE) on p-type Si(1 0 0) substrate. The activation energies of the heavily holes in ground states of QWs, which correspond to the energy differences between the heavy hole ground states and Si valence band, were measured by admittance spectroscopy. It is found that the activation energy in a heavily doped QW increases with doping concentration, which can be understood by the band alignment changes due to the doping in the QWs. Also, it is found that the activation energy in a QW with a doping concentration of 2 × 1020 cm−3 becomes larger after annealing at a temperature of 685 °C, which is attributed to more Boron atoms activation in the QW by annealing. 相似文献
33.
Nd2O3掺杂对SnO2气敏性质的影响 总被引:1,自引:0,他引:1
SnO_2是目前应用最广的一种气敏材料。我们曾经报道掺入La_2O_3,CeO_2,Pr_6O_(11),和Nd_2O_3后可使半导体元件的灵敏度提高,尤以对乙醇、乙醚、丙酮为显著。掺Nd_2O_3元件对乙炔的灵敏度也有提高。本文考察了SnO_2粒度和被测气氛的物化性质对掺Nd_2O_3元件灵敏度的影响。SnO_2采用水解SnCl_4法制备,纯度经光谱分析测定合格,试样用标准筛分目。在SnO_2中加1wt%Nd_2O_3(光谱纯)和适量水及甲基纤维素,混磨15分钟。将制成的悬浊液滴在一对铂 相似文献
34.
纳米二氧化钛粒子分散性能的研究 总被引:15,自引:0,他引:15
以四氯化钛为原料,采用溶胶-凝胶法技术合成路线,获得了平均粒径为63nm的二氧化钛粉末。采用分散技术,不仅可以改善粒子的分散性能,而且对粒子的生长也起到一定的抑制作用。研究表明:(1)采用SDS作为分散剂时,其极性基团和非极性基团分别与水和纳米TiO2粒子相结合,从而阻隔了TiO2粒子的团聚,起到分散作用。(2)以稀土元素La作为分散剂,其独特的轨道结构,不仅扩大了能量吸收的范围,更重要的是它与TiO2形成的络合物,使其成为相对独立的小团体,而它本身很小的固溶度使其难于形成合金化组元,结果被释放出来,从而形成更小的纳米TiO2粒子,起到分散纳米TiO2粒子的作用,并同时抑制纳米TiO2粒子的生长。 相似文献
35.
比较了用三碘甲状腺氨酸抗体(T3抗体)、褐藻酸钠(AS)标记T3抗体及褐藻酸钠-纳米金复合物(ASN)标记的T3抗体,在通过免疫反应结合到免疫电极表面后,引起的电极表面微环境发生改变的程度;用Fe(CN)3-/4-6为电化学探针,用循环伏安法获取金电极表面微环境改变的电流信息来检测 T3抗体,检测的线性范围为100~1 600ng·ml-1,检出限为45ng·ml-1. 相似文献
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38.
A portable chip-CE system with potential gradient detection (PGD) was developed and applied to the determinations of alkali metals and alkaloids. The separation efficiency appeared to be satisfactory and nonaqueous capillary electrophoresis (NACE) proved to be applicable to PGD or conductivity detection. The power supplies, separation and detection were built on a device of 3 kg in weight. A branch channel near the end of the separation channel was designed to perform PGD and make the application of relatively high field strength possible. The study is the first report on the application of PGD on the microchip platform. The design of the chip-CE system shows several advantages, such as simplicity, miniaturization and wide applicability. 相似文献
39.
对NO生理作用的新认识及其电化学实时检测 总被引:8,自引:0,他引:8
本文综述了近年来学术界对NO生理作用的新认识,并介绍了现场实时检测生物活体中释放的NO浓度的电化学方法. 相似文献
40.
The effect of the incorporation of small amounts (1–5 wt%) of semiconducting BaBiO3 and metallic Ba0.6K0.4BiO3 additives on the rechargeability of electrolytic manganese dioxide (EMD) cathodes in alkaline cells in the one-electron regime has been investigated. Both the BaBiO3 and Ba0.6K0.4BiO3 additives lead to better cyclability compared to the previously known binary oxide additive Bi2O3. X-ray diffraction patterns recorded before and after 30 cycles as well as cyclic voltammograms recorded after first and 30 cycles reveal that the better cyclability in the presence of BaBiO3 and Ba0.6K0.4BiO3 additives is due to the suppression of the formation of unwanted, electrochemically inactive birnessite and hausmannite phases and a shifting of the second-electron capacity of Mn to higher potentials. 相似文献