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钛基PbO_2疏水电极的研究 被引量:1
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作者 钟小芳 苏光耀 +2 位作者 李朝晖 高德淑 王先友 《湘潭大学自然科学学报》 CAS CSCD 1999年第3期46-49,共4页
提出了一种特别适用于憎水性有机物电解合成的疏水 Pb O2 电极的制备方法,并讨论了制取此电极的各种工艺条件,测试了电极的一些性能.该电极较好地解决了以往以钛为基体的 Pb O2 电极所存在的镀层与基体结合不牢、机械强度差... 提出了一种特别适用于憎水性有机物电解合成的疏水 Pb O2 电极的制备方法,并讨论了制取此电极的各种工艺条件,测试了电极的一些性能.该电极较好地解决了以往以钛为基体的 Pb O2 电极所存在的镀层与基体结合不牢、机械强度差,在用于有机合成时,电化学反应阻抗大,电流效率低,槽压高。 展开更多
关键词 钛基体 疏水电极 二氧化铅沉积 有机物 电解合成
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Study of Properties of Lead Selenide (PbSe) Thin Films Deposited on TiO2
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《Journal of Energy and Power Engineering》 2013年第11期2100-2105,共6页
The study of nano properties of PbSe (lead selenide) thin films deposited on TiO2 semi conductor film prepared by sol gel method was a new work destined to perfect the nano materials used in photovoltaic energy. The... The study of nano properties of PbSe (lead selenide) thin films deposited on TiO2 semi conductor film prepared by sol gel method was a new work destined to perfect the nano materials used in photovoltaic energy. The growth of the first group of the fihns (Set 1: P(9)) & P(14)) was based on the decomposition of lead citrate and sodium selenosulphite in the presence of sodium citrate and sodium hydroxide with ammonia and triethalamine (TEA) acting as the complexing agents and P.H stabilizers; while in the second group (Set 2: Pc15~), the reaction bath was made up of solutions of lead nitrate Pb(NO3)2, PVA (polyvinyl alcohol), H20 (distilled water), NH3 (ammonia), sodium selenosulphite (Na2SeSO3) and Triethalamine [N(CH2CH2OH)], which was used as the complexing agent. The deposited materials were identified by X-ray diffraction. In addition, nano optical and morphological investigations were also performed. The sample P9 has the lowest absorbance of about 0.3 nm in the ultra-violet region. It was found that there was a reduction in the optical absorbance as the wavelength increases. The optical band gap shows a range of 1.26-2.00 eV with sample PcIs~ having the lowest direct band gap. 展开更多
关键词 Annealing temperature chemical bath technique lead selenide thin films TiO2 semi conductor transmittance nanoproperties.
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