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湿化学工艺 在 无机化工 分类中 的翻译结果

发布时间:2016-11-19 18:30

  本文关键词:湿化学工艺条件对ZrO_2(Y_2O_3)超细颗粒团聚的影响,由笔耕文化传播整理发布。


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    EFFECTS OF WET CHEMICAL PROCESSING CONDITIONS ON THE AGGLOMERATION OF ZrO 2(Y 2O 3) ULTRAFINE PARTICLES

    湿化学工艺条件对ZrO_2(Y_2O_3)超细颗粒团聚的影响

短句来源

  

    EFFECTS OF WET CHEMICAL PROCESSING CONDITIONS ON THE AGGLOMERATION OF ZrO 2(Y 2O 3) ULTRAFINE PARTICLES

    湿化学工艺条件对ZrO_2(Y_2O_3)超细颗粒团聚的影响

短句来源

  

    By means of sol-gel technique, the nickel tetrasulfo_phthalocyanine (NiTSPc) doped silica xerogel composites was studied.

    采用溶胶 -凝胶湿化学工艺将不同掺杂浓度的四磺酸酞菁镍 (NiTSPc)植入二氧化硅凝胶基质 ,制备了均匀掺杂的复合干凝胶。

短句来源

    One of the focal topics in the field of phthalocyanine research is its materialization for practical use. The present paper reports the encapsulation of gallium phthalocyanine chloride(GaPcCl) into silica gel glass to make homogeneously doped composite by sol-gel technique. The spectral properties of the composite gel glass were carried out by IR,UV-Vis and fluorescence measurements.

    采用溶胶-凝胶(Sol-Gel)湿化学工艺将酞菁氯镓(GaPcCl)掺入二氧化硅(SiO2)凝胶玻璃基质,制备出均匀掺杂的GaPcCl复合凝胶玻璃,并对复合体系的红外光谱(IR)、紫外-可见吸收光谱(UV-Vis)及荧光光谱等谱学性能进行了测试。

短句来源

    The present paper reports the encapsulation of lead(Ⅱ) tetrakis (4-cumylphenoxy)-phthalocyanine (PbPc(CP)_4) into silica gel glass matrix to produce homogeneously doped composites by sol-gel technique. The existing state and structure of the doped PbPc(CP)_4 were studied by UV-Vis absorption spectra and TEM images.

    采用溶胶-凝胶(Sol-gel)湿化学工艺将四取代4-异丙苯基苯氧基酞菁铅PbPc(CP)4掺入二氧化硅(SiO2)凝胶玻璃基质,制备均匀掺杂的PbPc(CP)4复合凝胶玻璃,并通过紫外-可见(UV-Vis)吸收光谱和透射电镜(TEM)图像对PbPc(CP)4在复合凝胶玻璃中的存在状态及结构进行了表征。

短句来源

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  wet chemical processing

The above technologies have advantages over the current methods used to produce circuit boards and will alleviate the total dependency on wet chemical processing by the industry.

      

Nano-Particles by Wet Chemical Processing in Commercial Applications

      

Nano-sized materials produced by wet chemical processing have a wide range of industrial applications.

      

For many years now, we have been setting standards in wet chemical processing.

      

  wet chemical processing

The above technologies have advantages over the current methods used to produce circuit boards and will alleviate the total dependency on wet chemical processing by the industry.

      

Nano-Particles by Wet Chemical Processing in Commercial Applications

      

Nano-sized materials produced by wet chemical processing have a wide range of industrial applications.

      

For many years now, we have been setting standards in wet chemical processing.

      

湿化学工艺 在 无机化工 分类中 的翻译结果



By means of sol-gel technique, the nickel tetrasulfo_phthalocyanine (NiTSPc) doped silica xerogel composites was studied. The successful encapsulation was checked by the characterized ultraviolet_visual absorption spectra of NiTSPc. It is found that gel matrix of in the composites, NiTSPc coexists in the forms of monomer and dimmer, and the NiTSPc dimmer has kind of "face to face" conjugated structure. The optical limiting effect of the composites was measured at 532 nm with 8ns pulses. The influence of doped...

By means of sol-gel technique, the nickel tetrasulfo_phthalocyanine (NiTSPc) doped silica xerogel composites was studied. The successful encapsulation was checked by the characterized ultraviolet_visual absorption spectra of NiTSPc. It is found that gel matrix of in the composites, NiTSPc coexists in the forms of monomer and dimmer, and the NiTSPc dimmer has kind of "face to face" conjugated structure. The optical limiting effect of the composites was measured at 532 nm with 8ns pulses. The influence of doped concentration and central atom of metal_phthalocyanine(MPc) are discussed. The result shows that the increasing of NiTSPc doped concentration is benefit for the optical limiting effect and the introducing of heavy metal atom in the Pc ring can greatly increase it's optical limiting effect.

采用溶胶 -凝胶湿化学工艺将不同掺杂浓度的四磺酸酞菁镍 (NiTSPc)植入二氧化硅凝胶基质 ,制备了均匀掺杂的复合干凝胶。通过对复合干凝胶紫外可见吸收光谱的表征 ,证实了NiTSPc的成功掺杂。发现NiTSPc同时以单体和二聚体的形式存在于凝胶基质中 ,NiTSPc二聚体为面 -面共扼结构。对不同掺杂浓度复合干凝胶的光限幅性能进行了测试 ,并讨论了掺杂浓度和中心金属离子对复合材料光限幅性能的影响。结果表明 ,复合干凝胶的光限幅性能随着NiTSPc掺杂浓度的提高而增强 ,酞菁分子中重金属离子的引入会大大增强酞菁复合材料的光限幅性能

We report here the study of ArOPcPd doped silica xgel matrix obtained by sol-gel technique.The characterization of the composites were carried out by UV/Vis spectra.It is found that in the composites ArOPcPd mainly existed in the state of monomer.The optical limiting effect of the composites were measured and discussed.

采用Sol—gel湿化学工艺将芳氧基酞菁钯(ArOPcPd)植入到二氧化硅凝胶基质中,制备了均匀掺杂的复合干凝胶。通过对复合干凝胶的紫外—可见吸收光谱的表征,表明ArOPcPd主要以单体形式存在于凝胶基质中。对不同掺杂浓度复合干凝胶的光限幅性能进行了测试,证明了ArOPcPd的光限幅效应并讨论了掺杂浓度对复合材料光限幅性能的影响。

One of the focal topics in the field of phthalocyanine research is its materialization for practical use.The present paper reports the encapsulation of gallium phthalocyanine chloride(GaPcCl) into silica gel glass to make homogeneously doped composite by sol-gel technique.The spectral properties of the composite gel glass were carried out by IR,UV-Vis and fluorescence measurements.The results show that the introduction of GaPcCl doesn't make noteworthy changes in the IR spectra of silica gel glass matrix.The...

One of the focal topics in the field of phthalocyanine research is its materialization for practical use.The present paper reports the encapsulation of gallium phthalocyanine chloride(GaPcCl) into silica gel glass to make homogeneously doped composite by sol-gel technique.The spectral properties of the composite gel glass were carried out by IR,UV-Vis and fluorescence measurements.The results show that the introduction of GaPcCl doesn't make noteworthy changes in the IR spectra of silica gel glass matrix.The absorption of GaPcCl dimers increases compared with DMF solution.The fluorescence intensity of GaPcCl is greatly enhanced in the composite gel glass.

采用溶胶-凝胶(Sol-Gel)湿化学工艺将酞菁氯镓(GaPcCl)掺入二氧化硅(SiO2)凝胶玻璃基质,制备出均匀掺杂的GaPcCl复合凝胶玻璃,并对复合体系的红外光谱(IR)、紫外-可见吸收光谱(UV-Vis)及荧光光谱等谱学性能进行了测试。结果表明:GaPcCl的掺杂对凝胶玻璃基质的红外光谱没有产生显著影响;掺杂GaPcCl在复合体系中二聚体吸收峰的强度较其DMF溶液有所增大;掺杂GaPcCl在复合体系中荧光强度随浓度的增加远大于DMF溶液。

 


  本文关键词:湿化学工艺条件对ZrO_2(Y_2O_3)超细颗粒团聚的影响,由笔耕文化传播整理发布。



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