N-Boc-m-Phenylenediamine,N-BOC-间苯二胺

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N-Boc-m-Phenylenediamine: Your Gateway to Advanced Chemical Applications


Renowned by its Chinese name N-BOC-间苯二胺, this versatile chemical compound boasts a universally recognized CAS number – 68621-88-5 – and a unique molecular formula, C11H16N2O2, weighing in at a significant 208.257 g/mol.


The physical properties of N-Boc-m-Phenylenediamine are noteworthy. With a density ranging between 1.2±0.1 g/cm3, it presents itself as a solid, transitioning from white to gray or even brown, depending on its form – whether as a powder or crystal. Its boiling point stands at a remarkable 295.1±23.0°C, while the flash point registers at a safer 132.3±22.6°C. The partition coefficient (PSA) is 64.35000, and the logP value adds to its chemical behavior in different solvents.


The appearance of N-Boc-m-Phenylenediamine is a testament to its intriguing characteristics – a solid with a refractive index of 1.583. However, it requires careful storage, ideally under an inert atmosphere to prevent exposure to air. Intriguingly, it exhibits modest solubility in methanol, making it a potential candidate for specific chemical reactions.


While N-Boc-m-Phenylenediamine stands on its own as a valuable chemical, it's worth mentioning that it finds applications in conjunction with other advanced materials. For instance, it pairs well with 叠氮-六聚乙二醇-乙酸 and 活化脂二硫键连接生物素, enhancing their performance in bioconjugation and click chemistry. Other complementary compounds include:



  • m-马来酰亚胺基苯甲酰-N-羟基磺基琥珀酰亚胺酯 for molecular modification and stability

  • 叔丁基四聚乙二醇乙酸, a versatile linker in polymer chemistry

  • (6-溴己基)氨基甲酸叔丁酯, contributing to the synthesis of functional groups

  • 2,5-二氧吡咯烷 -1- 基3-(乙酰硫基)丙酸酯, a key component in pharmaceuticals

  • 1-(2-羟乙基)-1H-吡咯-2,5-二酮, a core moiety in organic synthesis


Each of these combinations opens up a world of possibilities in various scientific disciplines, from medicinal chemistry to materials science. N-Boc-m-Phenylenediamine, with its intriguing properties and versatile role in chemical reactions, is a cornerstone in the development of innovative technologies.


Editor's Note: This comprehensive overview was last updated by 齐岳HAO on 11月14日, 2023, ensuring the most current information for researchers and chemists alike.




已知:m、n是方程x 2 ﹣6x+5=0的两个实数根,且m<n,抛物线y=﹣x 2 +...
=14,S △BOC = ×5×5= 所以,S △BCD= S 梯形MDBO +S △DMC ﹣S △BOC =14+ ﹣ =15.(3)设P点的坐标为(a,0)因为线段BC过B、C两点,所以BC所在的直线方程为y=x+5.那么,PH与直线BC的交点坐标为E(a,a+5),PH与抛物线y=﹣x 2 ﹣4x+5的交点坐标为H(...

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