3ar 12br 5 Chloro 2 Methyl 2 3 3a 12b Tetrahydro 1h Dibenzo 2 3 6 7 Oxepino 4 5 C Pyrrole 2z But 2 Enedioate
pyridine pyrrole pyrazine piperidine piperazine

(3aR,12bR)-5-chloro-2-methyl-2,3,3a,12b-tetrahydro-1H-dibenzo[2,3:6,7]oxepino[4,5-c]pyrrole (2Z)-but-2-enedioate

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    969429

    Chemical Name (3aR,12bR)-5-chloro-2-methyl-2,3,3a,12b-tetrahydro-1H-dibenzo[2,3:6,7]oxepino[4,5-c]pyrrole (2Z)-but-2-enedioate

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    Where to Buy (3aR,12bR)-5-chloro-2-methyl-2,3,3a,12b-tetrahydro-1H-dibenzo[2,3:6,7]oxepino[4,5-c]pyrrole (2Z)-but-2-enedioate in China?
    As a trusted (3aR,12bR)-5-chloro-2-methyl-2,3,3a,12b-tetrahydro-1H-dibenzo[2,3:6,7]oxepino[4,5-c]pyrrole (2Z)-but-2-enedioate manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading (3aR,12bR)-5-chloro-2-methyl-2,3,3a,12b-tetrahydro-1H-dibenzo[2,3:6,7]oxepino[4,5-c]pyrrole (2Z)-but-2-enedioate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the chemical structure of (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate?
    I look at what you said " (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate", which is the name of an organic compound. To know its chemical structure, follow the principles of organic chemistry.
    In this nomenclature, " (3aR, 12bR) " indicates the configuration of the chiral center, which is related to the arrangement of atoms in space. "5-chloro" means that there is a chlorine atom substitution at a specific position (5 position), and "2-methyl" means that there is a methyl group at the 2 position. " 2,3,3a, 12b - tetrahydro - 1H - dibenzo [2,3:6,7] oxepino [4,5 - c] pyrrole "depicts the skeleton of the body, composed of dibenzooxy cycloheptatriene and hydrogenated at the 2,3,3a and 12b positions. The part of the" (2Z) -but - 2 - enedioate "table connected to the body is (2Z) -butyl - 2 - enedioate, and the configuration of the" Z "table double bond.
    According to this analysis, its chemical structure is roughly as follows: the body is a fused polycyclic system, containing benzene ring, oxy-heterocyclic heptatriene ring and pyrrole ring. The 5-position chlorine atom and the 2-position methyl. Outside the main body, the (2Z) -butyl-2-allenediate part is connected by an ester bond, and this double bond is in the Z configuration. To obtain a precise structure, it is necessary to use chemical mapping tools to clarify the spatial position and bonding relationship of each atom. This is only a rough inference based on the nomenclature.
    What are the physical properties of (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate?
    (3aR, 12bR) -5-chloro-2-methyl-2,3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxacycloheptano [4,5-c] pyrrole (2Z) -butyl-2-enediate, which is an organic compound. Its physical properties are quite important for its application in various fields.
    Looking at its properties, it can be a solid powder at room temperature and pressure. Due to the interaction between molecules, it is condensed. The powder form gives it a large specific surface area, or is conducive to the progress of certain chemical reactions. The melting point of
    is a key indicator for considering the thermal stability and phase transition of the compound. It has been experimentally determined that its melting point is in a certain temperature range. At this temperature, the molecule obtains enough energy, the lattice structure disintegrates, and it converts from a solid state to a liquid state. This property is of great significance in the purification, identification and preparation of compounds.
    Solubility is also a key physical property. The compound may have some solubility in common organic solvents such as ethanol and dichloromethane. In ethanol, due to the formation of hydrogen bonds or other weak interactions between ethanol molecules and compound molecules, it dissolves. In water, its solubility may be poor, which is related to the polarity of the compound molecules and the polarity of water. The polarity difference is large and the interaction force is weak, so it is difficult to dissolve.
    In addition, the density of the compound also has a specific value, reflecting the mass of the substance per unit volume, which is particularly important in chemical production, material preparation and other scenarios where accurate measurement of materials is required.
    Furthermore, its appearance may have a specific color, or be white or slightly yellowish, which may be determined by the molecular structure of light absorption and reflection characteristics. This appearance characteristic can be used as a preliminary judgment basis in quality control and identification.
    From the above, it can be seen that the physical properties of this compound are diverse, and in-depth study of it can lay the foundation for its application in pharmaceutical chemistry, materials science and other fields.
    What is the use of (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate?
    (3aR, 12bR) -5-chloro-2-methyl-2,3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxacycloheptano [4,5-c] pyrrole (2Z) -butyl-2-enediate, this is a complex organic compound. It has a wide range of uses in the field of pharmaceutical research and development, or has unique pharmacological activities. It can act on specific biological targets, regulate the physiological and biochemical processes in the body, and achieve the purpose of treating diseases, such as for some neurological diseases, or can regulate the transmission of neurotransmitters and improve the function of nerve cells; in anti-tumor research, or inhibit the proliferation and migration of tumor cells, providing new opportunities for the development of anti-cancer drugs.
    In the field of materials science, or because of its special molecular structure, materials are endowed with different properties. For example, in the field of optical materials, or exhibit unique optical properties, it can be used to fabricate new types of optical devices, such as Light Emitting Diodes, light sensors, etc., injecting new vitality into the development of optoelectronic devices; in the field of polymer materials, it can be used as a functional monomer to participate in the synthesis of polymer materials and improve the mechanical properties and thermal stability of materials.
    In addition, in organic synthetic chemistry, it is often used as a key intermediate. With its structural properties, it can derive many novel compounds through various chemical reactions, contributing to the development of organic synthetic chemistry, promoting the progress of organic synthesis methodologies, and helping scientists create more organic compounds with practical value.
    What is the synthesis method of (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate?
    The synthesis of (3aR, 12bR) -5-chloro-2-methyl-2,3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxacycloheptano [4,5-c] pyrrole (2Z) -butyl-2-enediate is a delicate and complex technique. To prepare this product, many delicate raw materials need to be prepared first. The starting material, when carefully selected compounds with specific structures, is the foundation of the synthesis industry.
    In the initial stage, in a delicate reaction vessel, at a suitable temperature and pressure, several carefully selected organic compounds are blended with each other. In the meantime, the reaction environment is skillfully adjusted, or accompanied by a specific catalyst. This catalyst is like a magic wand, which can speed up the reaction process and guide the reaction in the desired direction.
    After the first step of the reaction progresses smoothly and the product initially takes shape, it needs to go through a fine separation and purification process. This process is like a fine sieve, filtering out impurities one by one, leaving only pure intermediate products.
    Then, this intermediate product is introduced into a new reaction system. In this system, other reactants and catalysts are added, and the time and temperature of the reaction are strictly controlled. The regulation of temperature is like controlling the pulse of life. A slight deviation may cause the reaction to go astray.
    After this complex reaction and delicate operation, the final target product (3aR, 12bR) - 5-chloro-2-methyl-2,3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxacycloheptano [4,5-c] pyrrole (2Z) -butyl-2-enediate is obtained. Every step needs to be done carefully and not sloppy in order to achieve this delicate synthesis.
    (3aR, 12bR) -5-chloro-2-methyl-2, 3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxepino [4,5-c] pyrrole (2Z) -but-2-enedioate In what areas is it used?
    (3aR, 12bR) - 5-chloro-2-methyl-2,3,3a, 12b-tetrahydro-1H-dibenzo [2,3:6,7] oxacycloheptano [4,5-c] pyrrole (2Z) -butyl-2-enediate This substance is quite useful in the field of medicine.
    Looking at its structure, it is unique and exquisite. It is in the pharmaceutical industry or a key raw material for the creation of new drugs. Through fine synthesis, it can be used as a drug with outstanding efficacy to treat various diseases.
    It may have potential for the healing of neurological diseases. Due to its structural characteristics, the cap can interact with nerve receptors, regulate nerve conduction, and relieve diseases.
    In the way of anti-cancer, it may also play a role. It may interfere with the metabolism of cancer cells, hinder their proliferation, and add new force to anti-cancer drugs.
    In the prevention and treatment of cardiovascular diseases, it may contribute. Or it can regulate the physiological function of cardiovascular diseases and ensure their smooth operation.
    Although this compound has many potential uses, it needs to be strictly scientifically investigated and experimentally verified that it is safe and effective before it can benefit the world.