endoperoxides的音标为[ɪnˈdɒpəʊˌrɑːksɪdɪz],基本翻译为“过氧桥氧化物”,速记技巧为“endo”表示“内”,“peroxy”表示“过氧”。
Endoperoxides这个词来源于希腊语单词“endos”和“peroxi”,分别表示“内部的”和“过氧化物”。
变化形式:在词源中没有明确的变化形式,但是过氧化物在化学中通常会有氧化态的变化。
相关单词:
peroxidase:过氧化酶,一种能够催化过氧化氢反应的酶。
peroxidase-catalyzed reaction:过氧化酶催化的反应,一种在过氧化酶作用下发生的化学反应。
peroxidation:过氧化,过氧化物的形成过程。
hydroperoxide:过氧化氢,一种常见的过氧化物。
diperoxydicarbene:二过氧化二烯烃,一种有机化学中的中间体。
peroxide bridge:过氧化物桥,在金属有机化合物中常见的一种结构。
peroxydicarbonate:过氧化碳酸酯,一种有机化合物。
peroxysulfate:过氧化亚硫酸盐,一种环境化学中的污染物。
endoperoxycarbonyl:内过氧羰基,一种有机化学中的官能团。
endoperoxymonocarbon:内过氧化碳,一种理论化学中的概念。
以上这些单词都与过氧化物有关,涵盖了生物学、化学、环境和理论化学等多个领域。这些单词说明了过氧化物在自然界和实验室中的广泛存在和应用。
常用短语:
1. endoperoxides oxide endoperoxides
2. peroxide compound endoperoxides in organic synthesis
3. peroxide endoperoxides decomposition
4. endoperoxides in organic synthesis
5. endoperoxides in polymer science
6. endoperoxides in catalysis
7. endoperoxides in biochemistry
双语例句:
1. The reaction of organic peroxides with alcohols is a common method for the preparation of endoperoxides. (有机过氧化物与醇的反应是制备过氧化内酯的常见方法。)
2. The use of endoperoxides in polymer science has opened up new possibilities for the development of advanced materials. (在聚合物科学中使用过氧化内酯为开发先进材料开辟了新的可能性。)
3. Catalysts play a crucial role in the preparation of endoperoxides, which can be used as initiators for polymerization reactions. (催化剂在制备过氧化内酯的过程中起着至关重要的作用,这些内酯可以作为聚合反应的引发剂。)
4. The presence of endoperoxides in biochemistry has led to a new understanding of the chemical reactions that occur within cells. (在生物化学中过氧化内酯的存在使我们对细胞内发生的化学反应有了新的理解。)
5. The use of endoperoxides in organic synthesis has opened up new avenues for the preparation of complex molecules. (在有机合成中使用过氧化内酯为复杂分子的制备开辟了新的途径。)
6. The decomposition of endoperoxides is a complex process that requires careful monitoring and control. (过氧化内酯的分解是一个复杂的过程,需要仔细监测和控制。)
7. The stability and reactivity of endoperoxides are highly dependent on their chemical environment, making them a versatile and interesting class of compounds. (过氧化内酯的稳定性和反应性高度取决于其化学环境,使其成为一种多才多艺且有趣的化合物类别。)
英文小作文:
Endoperoxides are a class of compounds that have attracted increasing interest in recent years due to their unique chemical properties and versatile applications in various fields. From polymer science to biochemistry, from organic synthesis to catalysis, endoperoxides have opened up new possibilities for the development of advanced materials and chemical processes.
However, the decomposition of endoperoxides remains a challenging process that requires careful monitoring and control. Understanding the factors that affect the stability and reactivity of endoperoxides is crucial for their safe and effective use in various applications.
In conclusion, endoperoxides are a fascinating class of compounds that hold great promise for future research and applications. Understanding their chemistry and applications will continue to drive progress in various fields of science and technology.
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