Discover the exceptional versatility of 2,2-Dimethyl-1-propylpiperidin-4-ol, a premium-quality chemical compound with a CAS number of 1904187-00-3. Boasting a molecular weight of 171.3 g/mol and a minimum purity of 95%, this captivating molecule offers a world of possibilities for your research and development needs. Unlock its potential in a wide range of applications, from pharmaceuticals to agrochemicals, and experience the reliability and precision that this compound delivers. Delve into the depth of its chemical properties, and let its unique structure inspire your next groundbreaking discovery.
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Unlock the versatile potential of 2,2-Dimethyl-1-propylpiperidin-4-ol, a meticulously crafted chemical compound that holds the key to unlocking new frontiers in scientific research and development. With its unique molecular structure and exceptional purity, this compound is poised to become an indispensable tool in the hands of discerning researchers and innovators.
At the heart of this compound lies a piperidin-4-ol core, adorned with two strategically placed methyl groups and a propyl substituent. This intricate arrangement of atoms bestows 2,2-Dimethyl-1-propylpiperidin-4-ol with a distinct chemical profile, making it a valuable asset in a wide range of applications, from pharmaceutical development to material science breakthroughs.
With a molecular weight of 171.3 g/mol and a purity of at least 95%, this compound is meticulously crafted to meet the exacting standards of the most demanding research environments. Its CAS number, 1904187-00-3, and product reference, 3D-EBD18700, provide a unique identifier for researchers seeking to unlock its full potential.
In the realm of pharmaceutical research, 2,2-Dimethyl-1-propylpiperidin-4-ol shines as a versatile building block for the synthesis of innovative drug candidates. Its piperidin-4-ol core, coupled with the strategic placement of the methyl and propyl groups, endows the compound with unique chemical properties that can be leveraged to develop targeted therapies for a wide range of health conditions. Researchers can harness the compound's reactivity and selectivity to create novel pharmaceutical compounds with enhanced efficacy, improved pharmacokinetic profiles, and reduced side effects.
The potential applications of 2,2-Dimethyl-1-propylpiperidin-4-ol in the pharmaceutical industry are vast and promising, as scientists continue to explore its ability to unlock new avenues for therapeutic interventions.
Beyond the realm of pharmaceuticals, 2,2-Dimethyl-1-propylpiperidin-4-ol also finds its place in the exciting world of material science. Researchers in this field recognize the compound's potential to contribute to the development of cutting-edge materials with enhanced performance characteristics. By leveraging the unique properties of the piperidin-4-ol core and the strategic placement of the methyl and propyl groups, scientists can engineer novel polymers, coatings, or composites with improved thermal stability, mechanical strength, or optical properties.
The versatility of 2,2-Dimethyl-1-propylpiperidin-4-ol allows it to be seamlessly integrated into a wide range of material science applications, from advanced electronics to high-performance industrial components. As the demand for innovative materials continues to grow, this compound stands as a valuable asset in the pursuit of groundbreaking discoveries.
The true potential of 2,2-Dimethyl-1-propylpiperidin-4-ol lies in its ability to inspire and empower researchers, scientists, and innovators to push the boundaries of what is possible. With its exceptional purity, unique chemical structure, and diverse range of applications, this compound is poised to become a cornerstone in the advancement of scientific knowledge and the development of transformative technologies.
Unlock the doors to new discoveries and breakthroughs by incorporating 2,2-Dimethyl-1-propylpiperidin-4-ol into your research and development endeavors. Embark on a journey of exploration, where the possibilities are as limitless as the human imagination. Together, let us unlock the future and redefine the boundaries of what can be achieved.