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- aryl arsine oxyhalide 卤氧化芳胂
- arsine oxyhalide 胂化氧卤
- tertiary arsine oxyhalide 氧卤化叔坤化
- diaryl arsine oxyhalide 二芳基胂化氧卤
- Arsine is a colorless, poisonous gas that requires careful handling. 胂是一种无色的有毒的气体,需要小心地对待。
- How to choose the base used in the synthesis of arsine ylide is studied. 本文主要研究了胂叶立德合成中碱的选择。
- We have investigated oxyhalide glass in detail for the blue and green light output. 系统的研究了用于实现蓝绿光输出的卤氧玻璃材料。
- Arsine is a toxic, colorless gas with a garlic-like odor at room temperature and atmospheric pressure. 胂是一种无色有毒气体,在室温和大气压力下会发出类似大蒜的气味。
- Typical of the dopant chemistry is the reaction for arsine, which is depicted with the deposition process in Fig. 9. 砷化三氢的反应是典型的掺杂化学反应,图9显示了该反应的淀积过程。
- Diagnostic criteria and principles of management of occupational acute arsine poisoning. 职业性急性砷化氢中毒诊断标准及处理原则.
- This article provides the synthesis methods of high purity Arsine by arse nic,zinc and sulfuric-acid. 介绍了用砷、锌和硫酸合成高纯砷烷的方法;产品纯度为99.;995%25;总收率为85%25。
- Hill pig answers: Once? of Lang arsine oxime is dangerous advent, do not have time grind one's teeth. 山猪答道:你想想看,一旦危险来临,就没时间磨牙了。
- The phosphine and arsine absorb the ultraviolet light much more strongly than does silane, causing them to be deposited out on the walls of the container. 磷化氢和砷化三氢对紫外光的吸收比硅烷强烈得多,因此,它们就沉积在容器的器壁上。
- Hydrocyanic acid, cyanogen chloride, arsine,phosgene, chloropicrin,benzol, bromcmethane,lewislte gas,toxic smoke and mist,hydrogen phosphide etc. 氢氰酸、氯化氰、砷化 氢、光气、氯化苦、苯、溴甲烷。路易氏气、毒烟、毒雾、磷化氢等。
- Er~(3+)/Tm~(3+)/yb~(3+)-codoped new oxyhalide tellurite glass was prepared in this paper,thermal stability,Raman spectrum and upconversion luminescence of Er~(3+)/Tm~(3+)/Yb~(3+)-codoped oxyhalide tellurite glass were studied. 本文制备了一种新的Er~(3+)/Tm~(3+)/Yb~(3+)共掺氧卤碲酸盐玻璃,研究了基质玻璃的热稳定性能、Raman 光谱和上转换发光。
- To achieve such a miracle,the semiconductor industry has gone to extremes,using the world's most toxic substances like Arsine,Phosphine,Hydrofluoride,Hydrobromide and the like. Soon,even Synchroton will be used. 但是,为了这种“奇迹”,半导体技术也到了无所不用其极的地步,世上最剧毒的物质如砷烷(AsH3)、磷烷(PH3)、氟化氢(HF)、溴化氢(HBr),等一长串毒品全都用上,很快连同步加速器也要用上去了。
- To achieve such a miracle,the semiconductor industry has gone to extremes,using the world's most toxic substances like Arsine,Phosphine,Hydrofluoride,Hydrobromide and the like.Soon,even Synchroton will be used. 但是,为了这种“奇迹”,半导体技术也到了无所不用其极的地步,世上最剧毒的物质如砷烷(AH3)、磷烷(PH3)、氟化氢(HF)、溴化氢(HB),等一长串毒品全都用上,很快连同步加速器也要用上去了。
- In 1978, John H. Clark at Los Alamos Scientific Laboratories for the first time removed the common impurities of silane, such as phosphine (PH3) and arsine (AsH3), by irradiating the silane gas with a pulsed ultraviolet laser. 1978年,洛斯阿拉莫斯科学实验室的克拉克(John h.;Clark)第一次通过用脉冲紫外激光照射硅烷气体的办法,除去硅烷中象磷化氢(Ph3)和砷化三氢(Ash3)这类普通杂质。
- To achieve such a miracle, the semiconductor industry has gone to extremes, using the world's most toxic substances like Arsine, Phosphine, Hydrofluoride, Hydrobromide and the like. Soon, even Synchroton will be used. 但是,为了这种“奇迹”,半导体技术也到了无所不用其极的地步,世上最剧毒的物质如砷烷(AH3)、磷烷(PH3)、氟化氢(HF)、溴化氢(hb),等一长串毒品全都用上,很快连同步加速器也要用上去了。
- To achieve such a miracle, the semiconductor industry has gone to extremes, using the world's most toxic substances like Arsine, Phosphine, Hydrofluoride, Hydrobromide and the like.Soon, even Synchroton will be used. 但是,为了这种“奇迹”,半导体技术也到了无所不用其极的地步,世上最剧毒的物质如砷烷(ah3)、磷烷(ph3)、氟化氢(hf)、溴化氢(hb),等一长串毒品全都用上,很快连同步加速器也要用上去了。