3-Hydroxy-1-adamantyl methacrylate _CAS:115372-36-6
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3-Hydroxy-1-adamantyl methacrylate_CAS:115372-36-6
Identification | ||
Name |
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3-Hydroxy-1-adamantyl methacrylate |
Synonyms |
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1,3-Adamantanediol monomethacrylate;
1-Methacryloyloxy-3-adamantanol; 2-Methyl-2-propenoic acid 3-hydroxytricyclo[3.3.1.1(3,7)]dec-1-yl ester; 3-Hydroxy-1-adamantyl methacrylate;
Methacrylic Acid 3-Hydroxy-1-adamantyl Ester |
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Molecular Structure |
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Molecular Formula |
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C14H20O3 |
Molecular Weight |
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236.31 |
CAS Registry Number |
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115372-36-6 |
Properties | ||
Density |
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1.17 |
Melting point |
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89.0 to 93.0 °C |
Boiling point |
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329 ºC |
Refractive index |
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1.451-1.453 |
Flash point |
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133 ºC |
Acidity coefficient |
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14.46±0.40 |
Enhanced Thermal Stability: The adamantane structure imparts exceptional thermal stability to 3-HAM, making it ideal for applications requiring high-temperature resistance. This characteristic is particularly beneficial in the formulation of advanced polymers and resins used in demanding environments.
Superior Mechanical Strength: The rigid adamantane core also contributes to the mechanical strength of materials derived from 3-HAM. This makes it suitable for use in coatings, adhesives, and other materials where durability and resistance to deformation are critical.
Chemical Resistance: 3-Hydroxy-1-adamantyl methacrylate exhibits excellent resistance to chemical degradation, including resistance to acids, bases, and solvents. This property is crucial for applications in harsh chemical environments, ensuring long-lasting performance of the end products.
Improved Adhesion: The hydroxyl group present in 3-HAM enhances its adhesion properties, making it a valuable component in adhesive formulations. This improves bonding strength on a variety of substrates, including metals, plastics, and ceramics.
Versatile Applications: Due to its combination of properties, 3-Hydroxy-1-adamantyl methacrylate is widely used in the production of high-performance coatings, optical materials, and advanced composites. It is also utilized in the development of specialized resins for electronics, automotive, and aerospace industries.
Superior Mechanical Strength: The rigid adamantane core also contributes to the mechanical strength of materials derived from 3-HAM. This makes it suitable for use in coatings, adhesives, and other materials where durability and resistance to deformation are critical.
Chemical Resistance: 3-Hydroxy-1-adamantyl methacrylate exhibits excellent resistance to chemical degradation, including resistance to acids, bases, and solvents. This property is crucial for applications in harsh chemical environments, ensuring long-lasting performance of the end products.
Improved Adhesion: The hydroxyl group present in 3-HAM enhances its adhesion properties, making it a valuable component in adhesive formulations. This improves bonding strength on a variety of substrates, including metals, plastics, and ceramics.
Versatile Applications: Due to its combination of properties, 3-Hydroxy-1-adamantyl methacrylate is widely used in the production of high-performance coatings, optical materials, and advanced composites. It is also utilized in the development of specialized resins for electronics, automotive, and aerospace industries.