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Tris(hydroxymethyl)aminomethane: Analysis of Multisolvent Dissolution Characteristics and Application Guide

Product Details

Place of Origin: hubei

Brand Name: desheng

Certification: ISO9000

Model Number: 77-86-1

Payment & Shipping Terms

Minimum Order Quantity: 20kg

Price: Detailed discussion

Packaging Details: 20kg / box

Delivery Time: 5 days

Payment Terms: L/C,D/P,T/T,Western Union

Supply Ability: 5t/week

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Specifications
Highlight:

Tris (hydroxymethyl) aminomethane

,

77-86-1

,

Biological buffer

Appearance:
White Powder
Model:
Tris Buffer
Manufacturer:
Desheng
Packing:
500g / Box
Appearance:
White Powder
Model:
Tris Buffer
Manufacturer:
Desheng
Packing:
500g / Box
Description
Tris(hydroxymethyl)aminomethane: Analysis of Multisolvent Dissolution Characteristics and Application Guide


Trihydroxymethyl aminomethane has outstanding solubility in water, with a solubility of approximately 400 milligrams per milliliter under conventional conditions. This solubility characteristic makes it an ideal choice in aqueous systems and widely used in biochemical experiments, molecular biology research, and buffer solution preparation. Its aqueous solution has good stability and can provide a suitable acid-base environment for various biochemical reactions, making it an indispensable chemical reagent in routine laboratory operations.


Product Name

Tris (hydroxymethyl) aminomethane

Chemical Abbreviation

TRIS buffer

Product Appearance

White crystalline powder

CAS Number

77-86-1

Molecula Formula

C4H11NO3

Molecular Weight

121.135

Standard  Packaging

500g/bottle

Manufacturer

Hubei Xindesheng


Dissolution behavior in organic solvents


In addition to water, trihydroxymethylaminomethane also exhibits considerable solubility in various organic solvents. In the ethylene glycol system, its solubility can reach 79.1 milligrams per milliliter; The dissolved amount in methanol is about 26 milligrams per milliliter. These two solvents provide important dissolution media for trihydroxymethylaminomethane beyond water, expanding its potential applications in non-aqueous systems or special reaction conditions. In 95% ethanol, the dissolved amount is about 22 milligrams per milliliter;  The dissolved amount in anhydrous ethanol is 14.6 milligrams per milliliter. These data indicate that trihydroxymethylaminomethane has a certain degree of compatibility in polar organic solvents.


Explanation of factors affecting solubility


The difference in the solubility of trihydroxymethylaminomethane in different solvents reflects the characteristics of solvent properties and the interactions between solute molecules. The dissolution process is influenced by multiple factors such as solvent polarity, hydrogen bonding ability, and intermolecular forces. In practical operation, temperature changes, solvent purity, and mixed solvent ratios can also affect the final dissolution effect. For example, an increase in temperature is usually beneficial for the dissolution process, while trace amounts of water or other impurities contained in the solvent may alter the dissolution equilibrium. Understanding these influencing factors can help optimize dissolution schemes in practical applications.


Application scenarios and selection suggestions


Based on its solubility characteristics, the application of trihydroxymethyl aminomethane in different fields requires consideration of solvent selection. In aqueous biological experiments, its high water solubility can be directly utilized; In reaction systems that require the participation of organic solvents, formula design can be based on their solubility data in solvents such as ethylene glycol and methanol. For special experimental requirements, such as maintaining buffering capacity in ethanol it is recommended to determine the appropriate concentration through small-scale pilot experiments. In addition, when converting across solvent systems, attention should be paid to the crystallization or precipitation phenomena that may be caused by differences in solubility.


Precautions and practical operation


The dissolution data provided in the article were obtained under specific measurement conditions. In practical applications, it is recommended to make appropriate adjustments based on specific experimental conditions. Differences in solvent batches, changes in storage conditions, and weighing accuracy may all affect the final dissolution effect. When preparing high concentration solutions, moderate heating or ultrasound assisted dissolution can be considered; For sensitive experimental systems, attention should be paid to the potential side effects of temperature increase. It is recommended to confirm the purity of the solvent before use and select products of appropriate specifications according to experimental requirements.


The diverse solubility characteristics of trihydroxymethylaminomethane provide a foundation for its diverse applications in scientific research and industrial fields. Understanding its dissolution behavior in different media can help users develop experimental plans more effectively, optimize process flow, and fully leverage its functional value in buffer systems, chemical reactions, and product preparation. In practical work, selecting a suitable solvent system based on specific needs will help improve the reliability and reproducibility of experimental results.


Tris(hydroxymethyl)aminomethane: Analysis of Multisolvent Dissolution Characteristics and Application Guide 0

Product packaging


As a manufacturer of trihydroxymethylaminomethane raw materials, Desheng not only focuses on product quality control, but also continuously innovates and optimizes production processes to ensure that the supplied trihydroxymethylaminomethane powder can be quickly and completely dissolved in water, meeting the needs of various application scenarios and being easy to use. If you have any relevant intentions, please click on the website to inquire about details and purchase!

 

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