[{"data":1,"prerenderedAt":23},["ShallowReactive",2],{"notifications-general-de":3,"compound-LIMOT-de":4},"Wegen der Sommerferien arbeitet das Labor vom 22. Juli bis 9. August 2026 nach einem geänderten Zeitplan. Analyseergebnisse sind 7 bis 10 Tage nach Proben­eingang verfügbar. Vielen Dank für Ihr Verständnis.",{"name":5,"shortname":6,"synonyms":7,"cas":8,"molMass":9,"pubchemLink":10,"structure":11,"important":12,"synthetic":13,"compoundClass":14,"asociationImage":17,"summarySet":18,"compoundEffectSet":22},"Limonene oxide, trans-","LIMOT","Limonene oxide, trans-(-)-, (S)-(-)-Limonene oxide","42477-94-1",152.23,"https:\u002F\u002Fpubchem.ncbi.nlm.nih.gov\u002Fcompound\u002F8029780","science\u002Fstructures\u002FLimoneneoxidetrans.png",true,false,{"id":15,"description":16},"1","Terpenoids","",[19],{"summaryText":20,"language":21},"\u003Cp>Trans-limonene oxide, also known simply as limonene oxide, is a cyclic ether and a chemical compound found in citrus fruits, particularly in the essential oils of lemon, lime, and orange. Its chemical structure consists of a six-membered ring with an oxygen atom, and it is classified as a terpene oxide. The \"trans\" designation indicates the relative orientation of substituents around the ring.&nbsp;\u003C\u002Fp>\u003Cp>Limonene oxide, like other terpenes found in citrus oils, possesses antioxidant properties. Antioxidants help neutralize harmful free radicals in the body, potentially reducing oxidative stress and its associated health risks.&nbsp;In some industrial processes, limonene oxide may be used as a solvent or as an intermediate compound in the synthesis of other chemicals.\u003Cbr>\u003C\u002Fp>",null,[],1785925846661]