Cas no 72620-76-9 (N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide)
N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide Chemical and Physical Properties
Names and Identifiers
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- N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide
- N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide
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- Inchi: 1S/C15H24N2O2/c1-15(2,3)19-14(18)17-16-13-11-5-9-4-10(7-11)8-12(13)6-9/h9-12H,4-8H2,1-3H3,(H,17,18)/b16-13-
- InChI Key: CMZBMSRCANUROB-SSZFMOIBSA-N
- SMILES: N(C(OC(C)(C)C)=O)/N=C1\C2CC3CC\1CC(C3)C2
N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Apollo Scientific | OR311142-500mg |
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide |
72620-76-9 | 500mg |
£376.00 | 2024-07-21 | ||
| Apollo Scientific | OR311142-1g |
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide |
72620-76-9 | 1g |
£509.00 | 2024-07-21 | ||
| TRC | N112175-50mg |
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide |
72620-76-9 | 50mg |
$ 280.00 | 2022-06-03 | ||
| TRC | N112175-100mg |
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide |
72620-76-9 | 100mg |
$ 460.00 | 2022-06-03 | ||
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1594587-50mg |
Tert-butyl 2-(adamantan-2-ylidene)hydrazine-1-carboxylate |
72620-76-9 | 98% | 50mg |
¥1499.00 | 2024-05-02 | |
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1594587-500mg |
Tert-butyl 2-(adamantan-2-ylidene)hydrazine-1-carboxylate |
72620-76-9 | 98% | 500mg |
¥3776.00 | 2024-05-02 | |
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1594587-1g |
Tert-butyl 2-(adamantan-2-ylidene)hydrazine-1-carboxylate |
72620-76-9 | 98% | 1g |
¥6961.00 | 2024-05-02 | |
| SHANG HAI HAO HONG Biomedical Technology Co., Ltd. | 1594587-2g |
Tert-butyl 2-(adamantan-2-ylidene)hydrazine-1-carboxylate |
72620-76-9 | 98% | 2g |
¥12057.00 | 2024-05-02 | |
| abcr | AB582578-500mg |
N'-(Adamantan-2-ylidene)(t-butoxy)carbohydrazide; . |
72620-76-9 | 500mg |
€497.00 | 2025-04-16 | ||
| abcr | AB582578-1g |
N'-(Adamantan-2-ylidene)(t-butoxy)carbohydrazide; . |
72620-76-9 | 1g |
€769.30 | 2025-04-16 |
N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide Suppliers
N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide Related Literature
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Eléonore Resongles,Corinne Casiot,Fran?oise Elbaz-Poulichet,Rémi Freydier,Odile Bruneel,Christine Piot,Sophie Delpoux,Aurélie Volant,Angélique Desoeuvre Environ. Sci.: Processes Impacts, 2013,15, 1536-1544
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Zhiyan Chen,Nan Wu,Yaobing Wang,Bing Wang,Yingde Wang J. Mater. Chem. A, 2018,6, 516-526
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Norihito Fukui,Keisuke Fujimoto,Hideki Yorimitsu,Atsuhiro Osuka Dalton Trans., 2017,46, 13322-13341
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Hongxia Li,Aikifa Raza,Qiaoyu Ge,Jin-You Lu,TieJun Zhang Soft Matter, 2020,16, 6841-6849
Additional information on N'-(adamantan-2-ylidene)(tert-butoxy)carbohydrazide
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide: A Comprehensive Overview
N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide, identified by the CAS number 72620-76-9, is a compound of significant interest in the fields of organic chemistry and materials science. This compound, with its unique structural features, has garnered attention due to its potential applications in drug development, catalysis, and advanced materials synthesis. The molecule combines the robust framework of an adamantane moiety with the functional versatility of a carbohydrazide group, making it a valuable component in various chemical reactions and material assemblies.
The structure of N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide is characterized by a rigid adamantane core, which provides stability and rigidity to the molecule. The carbohydrazide group introduces reactivity and functionality, enabling this compound to participate in a wide range of chemical transformations. Recent studies have highlighted its role as a versatile building block in the synthesis of complex organic molecules, particularly in the construction of bioactive compounds and advanced materials.
One of the most promising applications of this compound lies in its use as a catalyst in asymmetric synthesis. Researchers have demonstrated that N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide can act as a chiral auxiliary, facilitating the enantioselective formation of complex organic molecules. This property has significant implications for the pharmaceutical industry, where the synthesis of chiral drugs is a critical challenge.
In addition to its catalytic applications, this compound has also been explored for its potential in materials science. Its rigid structure and functional groups make it an ideal candidate for use in the development of high-performance polymers and hybrid materials. Recent advancements have shown that incorporating this compound into polymer matrices can enhance mechanical properties and thermal stability, opening new avenues for its use in advanced composites and electronic materials.
The synthesis of N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide involves a multi-step process that combines traditional organic synthesis techniques with modern catalytic methods. The key steps include the preparation of the adamantane derivative, followed by functionalization with the carbohydrazide group. Optimization of reaction conditions has been crucial in achieving high yields and purity levels, ensuring that this compound is accessible for large-scale applications.
From an environmental standpoint, researchers have also investigated the biodegradability and toxicity profiles of this compound. Initial studies suggest that it exhibits low toxicity and moderate biodegradability under standard conditions, which aligns with current trends toward sustainable chemistry practices.
In conclusion, N'-(Adamantan-2-ylidene)(tert-butoxy)carbohydrazide (CAS No. 72620-76-9) is a multifaceted compound with diverse applications across various scientific disciplines. Its unique structure, reactivity, and functional versatility make it an invaluable tool in modern chemistry research. As ongoing studies continue to uncover new potential uses for this compound, its role in advancing both academic research and industrial applications is expected to grow significantly.
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