Cas no 26387-53-1 (triethyl orthoformate-d1)
triethyl orthoformate-d1 Chemical and Physical Properties
Names and Identifiers
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- triethyl orthoformate-d1
- (2-aziridin-1-yl-ethyl)-triethoxy-silane
- 1,1,1-triethoxy-1-deuteromethane
- Aziridine, 1-[2-(triethoxysilyl)ethyl]-
- C-deuterio-orthoformic acid triethyl ester
- CTK0A6198
- deuterio-triethoxy-methane
- Triethoxy-< 2-ethylenimino-ethyl> -silan
- triethoxy< 2H1> methane
- triethoxydeuteromethane
- triethyl orthoformate-D
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triethyl orthoformate-d1 Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| A2B Chem LLC | AF31947-250mg |
TRIETHYL ORTHOFORMATE-D1 |
26387-53-1 | 98%D | 250mg |
$1163.00 | 2024-04-20 |
triethyl orthoformate-d1 Related Literature
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Teresita Carrillo-Hernández,Philippe Schaeffer,Pierre Albrecht Chem. Commun., 2001, 1976-1977
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Huiying Xu,Lu Zheng,Yu Zhou,Bang-Ce Ye Analyst, 2021,146, 5542-5549
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3. An all-solid-state imprinted polymer-based potentiometric sensor for determination of bisphenol S?Rongning Liang,Tanji Yin,Ruiqing Yao,Wei Qin RSC Adv., 2016,6, 73308-73312
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Alvin Tanudjaja,Shinsuke Inagi,Fusao Kitamura,Toshikazu Takata,Ikuyoshi Tomita Dalton Trans., 2021,50, 3037-3043
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Jingquan Liu,Huiyun Liu,Zhongfan Jia,Volga Bulmus,Thomas P. Davis Chem. Commun., 2008, 6582-6584
Additional information on triethyl orthoformate-d1
Triethyl Orthoformate-d1: Applications and Significance in Modern Chemical Research
Triethyl orthoformate-d1, a deuterated derivative of triethyl orthoformate (CAS no. 26387-53-1), is a compound of significant interest in the field of chemical research and pharmaceutical development. The CAS no. 26387-53-1 identifies this molecule as a specific chemical entity, while the name "triethyl orthoformate-d1" highlights its structural composition and isotopic modification. This introduction aims to provide a comprehensive overview of the compound, its properties, and its applications, particularly in the context of recent advancements in scientific research.
Triethyl orthoformate is an organic compound characterized by the formula (CH?COOCH?)?C, where each methyl group is replaced by a deuterium atom in the triethyl orthoformate-d1 variant. This deuterated form is particularly valuable in nuclear magnetic resonance (NMR) spectroscopy due to the high resolution and sensitivity it offers. The presence of deuterium atoms allows researchers to distinguish between different chemical environments more effectively, making it an indispensable tool in structural elucidation and dynamic studies.
The CAS no. 26387-53-1 is a unique identifier for triethyl orthoformate, ensuring that researchers worldwide can accurately reference and obtain this compound. The use of such identifiers is crucial for maintaining consistency and accuracy in scientific literature and databases. The name "triethyl orthoformate-d1" further specifies the isotopic form of the compound, which is essential for applications requiring high precision, such as in metabolomics and drug metabolism studies.
In recent years, the demand for deuterated compounds has surged due to their utility in various scientific disciplines. Triethyl orthoformate-d1, with its unique properties, has found applications in both academic research and industrial settings. One of the most notable areas of application is in the synthesis of complex organic molecules. The high-resolution NMR spectra obtained using triethyl orthoformate-d1 enable chemists to determine the structure of novel compounds with greater confidence, thereby accelerating the drug discovery process.
Moreover, triethyl orthoformate-d1 has been utilized in kinetic studies to investigate reaction mechanisms at a molecular level. The ability to monitor deuterium exchange reactions provides valuable insights into reaction pathways and intermediates. This information is critical for optimizing synthetic routes and improving yields in pharmaceutical manufacturing. Recent studies have demonstrated its effectiveness in studying catalytic processes, where understanding the interaction between reactants and catalysts is paramount.
The pharmaceutical industry has also embraced triethyl orthoformate-d1 for its role in developing new therapeutic agents. Deuterated drugs are known to exhibit improved metabolic stability, leading to longer half-lives and enhanced efficacy. For instance, several clinical trials have explored the potential of deuterated analogs of existing drugs to enhance their pharmacokinetic profiles. The CAS no. 26387-53-1 associated with triethyl orthoformate ensures that researchers can reliably source this compound for such innovative studies.
Another significant application of triethyl orthoformate-d1 is in environmental chemistry. The compound serves as a tracer molecule to study environmental degradation processes and pollutant transport mechanisms. By tracking deuterium-labeled compounds, scientists can gain insights into how pollutants move through ecosystems and interact with biological systems. This research is vital for developing strategies to mitigate environmental contamination and protect public health.
In conclusion, triethyl orthoformate-d1 (CAS no. 26387-53-1) is a versatile compound with broad applications across multiple scientific disciplines. Its role in NMR spectroscopy, kinetic studies, pharmaceutical development, and environmental research underscores its importance in modern chemical science. As research methodologies continue to evolve, the demand for high-purity deuterated compounds like triethyl orthoformate-d1 is expected to grow, further solidifying its position as a cornerstone of scientific inquiry.
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