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What are the physical properties of 2-amino-6-benzothiazole carboxylic acids?
2-Amino-6-benzylaminopurine, also known as cytokinin, this substance has unique properties and is quite famous in the field of biochemistry.
Its shape is mostly white to light yellow crystalline powder, which is delicate in appearance, has no impurities visible to the naked eye, and is slightly shiny under light. Smell it, there is little odor, no pungent or special smell, and it is quite pure.
When it comes to solubility, it has little solubility in water, but can be soluble in dilute acid and dilute alkali solutions. This property makes it different in different acid-base environments. It also has a certain solubility in organic solvents such as ethanol and acetone, which is helpful for its use in organic synthesis and preparation.
In terms of stability, it is quite stable under normal temperature and can be stored for a long time without significant change in chemical properties. In case of high temperature, strong acid and strong alkali environment, its structure is easily damaged, resulting in reduced or lost activity. Therefore, when storing, it should be placed in a cool and dry place, away from direct light and extreme acid and alkali environments.
The melting point of 2-amino-6-benzylaminopurine is in a specific range, which is of great significance to its purity identification and preparation process. Precise control of the melting point can ensure high quality and stable performance of the product.
This compound is widely used in the field of plant growth regulation, can promote cell division and differentiation, and has a profound impact on plant germination, flowering, and fruiting. Due to its unique physical properties, it plays a key role in agriculture, horticulture and other industries, providing assistance for the cultivation of excellent varieties and the improvement of crop yield and quality.
What are the chemical properties of 2-amino-6-benzothiazole carboxylic acids?
2-% amino-6-benzylaminopurine, also known as 6-BA, is a plant growth regulator. Its chemical properties are unique and have the following numbers:
First, this substance is white crystalline powder with stable properties and a high melting point of 230-233 ° C. Under normal ambient temperature and humidity, it can be stored for a long time without easy deterioration, making it easy to store and transport.
Second, 2-% amino-6-benzylaminopurine has specific solubility. It is insoluble in water, but easily soluble in dilute acids, dilute bases and some organic solvents, such as dimethyl sulfoxide (DMSO). This solubility characteristic makes it necessary to select a suitable solvent to assist in the preparation of solutions in practical applications to ensure uniform dispersion and effective action.
Furthermore, the substance is weakly basic. The amino groups in its molecular structure allow it to react with acids to form corresponding salts. This alkaline property interacts with many physiological processes in plants, affecting plant cell division, differentiation and development.
In addition, 2-% amino-6-benzylaminopurine has good chemical stability and is not prone to decomposition or chemical reactions under normal conditions. However, under extreme conditions such as strong acids, strong bases or high temperatures, its structure may be damaged and its activity will be lost. Therefore, when storing and using, it is necessary to avoid such extreme environments. Due to its unique chemical properties, 2-% amino-6-benzylaminopurine is widely used in agriculture and horticulture, which can promote plant cell division, delay leaf senescence, and increase fruit setting rate. It is an important agricultural material for improving crop yield and quality.
What is the main use of 2-amino-6-benzothiazole carboxylic acid?
2-% hydroxy-6-benzylaminopurine, that is, 6-benzylaminopurine, is often represented by the English abbreviation 6-BA. This substance has a wide range of uses in agriculture, horticulture and other fields, and is actually an important plant growth regulator.
It has significant effect in agricultural production. First and foremost, it can promote crop cell division. Taking vegetable and fruit planting as an example, it can accelerate the cell division process, make fruit development more rapidly, and then improve fruit setting rate. Looking at tomato planting, after rational application of 6-BA, the number of fruit sets increased, the fruit expansion rate accelerated, and the final harvest also increased.
Furthermore, 6-BA can effectively delay crop aging. Leaves are the key organs of photosynthesis in crops, and 6-BA can maintain a high chlorophyll content in leaves, enhance photosynthetic efficiency, and prolong the functional period of leaves. When planting leafy vegetables, appropriate use of 6-BA can keep the leaves green and tender, and enhance the commercial value of vegetables.
In the field of tissue culture, the effect of 6-BA should not be underestimated. In the process of plant tissue culture, it is often used in combination with auxin, and the regulation of the ratio of the two has a great impact on the differentiation of plant tissues. When the concentration of 6-BA is relatively high, it can induce the differentiation of explants to buds, help the formation of plant seedlings, and provide a powerful means for rare plant propagation and rapid seedling cultivation.
In flower cultivation, 6-BA also has unique functions. It can promote flower bud differentiation, increase the number of flowers, and make flowers bloom more brightly and prolong the flowering period. For example, in orchid cultivation, timely application of 6-BA can improve the flowering quality and quantity of orchids and enhance their ornamental value.
In summary, 2 -% hydroxy - 6 - benzylaminopurine, with its many functions such as promoting cell division, delaying aging, and inducing tissue differentiation, plays a pivotal role in many fields such as agriculture, horticulture, and plant tissue culture, and has made significant contributions to the development of related industries.
What are the synthesis methods of 2-amino-6-benzothiazole carboxylic acid?
To prepare 2-amino-6-bromobenzothiazole acid, the method is as follows:
First take an appropriate amount of raw materials, after clever arrangement, and proceed in an orderly manner. One method is also to make the substance containing benzothiazole structure meet the specific brominating reagent. In a suitable reaction environment, either control its temperature or adjust its pH, so that the bromine atom precisely falls at the sixth position of benzothiazole, to obtain 6-bromobenzothiazole intermediate. At this time, it is necessary to pay attention to the amount of brominating reagent and the reaction time, and do not overdo it, causing side reactions.
Then, the operation of amination of 6-bromobenzothiazole is carried out. Choose a suitable amination reagent, or in an organic solvent, or with the help of catalytic aids, so that the amino group is connected to the second position of benzothiazole. This process also needs to be cautious, observe the reaction phenomenon, and adjust the conditions in time to ensure the smooth amination.
After obtaining 2-amino-6-bromobenzothiazole, seek the introduction of carboxyl groups to form 2-amino-6-bromobenzothiazole acid. Or by reacting with carboxylating reagents, in a specific reaction device, according to its reaction mechanism, careful operation. Or it can be converted through multiple steps, first introducing a group that can be converted into a carboxyl group, and then through appropriate chemical changes to obtain a carboxyl group.
To make this compound, every step needs to be carefully controlled, from the purity of the raw material to the reaction conditions, all matter success or failure. After the reaction, it still needs to go through the process of separation and purification to remove its impurities and obtain pure 2-amino-6-bromobenzothiazolic acid.
What is the price range of 2-Amino-6-benzothiazole carboxylic acid in the market?
In today's world, business conditions are unpredictable, and it is difficult to determine the market price of 2-amino-6-benzylaminopurine. However, I can give a brief outline based on the situation in the past and the general trend of the market.
In the past, the price of this product often fluctuated due to various reasons. It may be related to the abundance of raw materials, or the difficulty of craftsmanship, or it may be controlled by the government and the fluctuation of demand. At the beginning, the raw materials were abundant, the process was gradually mature, and the price was still stable. The price per unit was about tens to hundreds of thousands of dollars.
Then, the production of raw materials suddenly dropped, causing their sources to be in short supply, and the price also rose accordingly. In addition, the cost of technological improvement is quite huge, and the cost has increased sharply. The market price has risen to more than one hundred and fifty, and even up to two hundred.
Not long after, in order to promote the health of this industry, the government came out with regulations to guide it, and new techniques came out again. The cost has dropped slightly, and the demand has gradually stabilized. The price has then dropped, hovering around one hundred and twenty.
As for the near future, although there has been no significant change, the market situation is not static in the end. Either due to differences in climate, the production of raw materials changes slightly; or due to the issuance of new regulations, the industry needs to adjust its method. Therefore, its price may fluctuate between one hundred and ten and one hundred and forty.
The city is unstable, and the price is also indeterminate. All variables can make the price of 2-amino-6-benzylaminopurine fluctuate. To know the real-time price, you still need to carefully observe the current market situation and consult the human performers of virtual idols.