氧芴 的英文怎麼說

中文拼音 [yǎng]
氧芴 英文
dibenzofuran
  • : 名詞[化學] (氣體元素) oxygen (o)
  • : 名詞[化學] (有機化合物) fluorene
  1. 1. two kinds of azo pigments with excellent photosensitivity, named as flurenone bisazo ( f - azo ) and oxazole bisazo ( o - azo ), are synthesized. the preparation of organic photoconductive blended materials and their photoconductivity in single - layered photoreceptors made from f - azo / titanium oxide phthalocyanine ( tiopc ) composite and o - azo / tiopc, respectively, are investigated

    合成了酮基偶氮( f - azo )與?唑基偶氮( o - azo )兩種光敏性優良的偶氮化合物,並以此制備了酮基偶氮酞菁鈦和?唑基偶氮酞菁鈦復合光電導材料體系及其單層光電導體。
  2. Study on preparation of fluorenone by liquid - phrase oxidation

    液相化法制取酮的研究
  3. Study on preparation of fluorenone by gas catalytic oxidation process

    氣相催化化法制取酮的研究
  4. Catalyst preparation study for gas - phase oxidation of fluorene to fluorenone

    氣相化制酮催化劑製作條件的研究
  5. Study on preparation of fluorenone by means of air liquid phase catalytic oxidation

    空氣液相催化化法制取酮的研究
  6. Based on the above theory, the fluorinone - based azo was used to prepare the single - layer photoreceptors with fluorinone - based azo / tiopc composites in chapter iv, experimental data indicated that the photoconductivity of fluorinone - based azo / tiopc composite photoreceptors was improved in comparison with that of chlorodiane blue azo / tiopc composite photoreceptors, the amelioration was attributed to the more pronounced electron - acceptor characteristic of fluorinone - based azo, these results further confirmed the mechanism proposed for the synergetic enhancement and complementary effects in azo / tiopc composite systems

    根據激發態下部分電荷轉移機理,本論文第四章選擇具有電子受體特徵比較明顯的酮基偶氮制備了酮基偶氮/酞菁鈦復合單層光電導體,研究結果發現復合材料的光導性能比氯丹藍偶氮/酞菁鈦復合體系有所提高,進一步證實了偶氮/酞菁復合材料光導性能的協同增強效應的內在原因。
  7. Abstract : in this paper, the preparation of the catalysts for the oxidation of fluorene to fluoreone is studied. the influences of the dipping time, calcining temperature, calcining time and the air quantity during the calcination are discussed

    文摘:研究了用工業氣相化制取酮的催化劑製作條件,考察了浸漬時間、煅燒溫度、煅燒時間和煅燒空氣量對催化劑製作的影響
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