ZINC CARBONATE BASIC
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ZINC CARBONATE BASIC
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CAS No:
5970-47-8
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Formula:
C2H6O12Zn5
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Chemical Name:
ZINC CARBONATE BASIC
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Synonyms:
Zinc carbonate hydorxide;Zincate(4-),bis[carbonato(2-)]pentaoxapenta-,tetrahydrogen,dihydrate;Zinccarbonate,basic,tetrahydr;ZINC HYDROXIDE CARBONATE;ZINC CARBONATE HYDROXIDE POWDER (53% ZN MIN.);Zincate, bis[carbonato]pentaoxapenta-, tetrahydrogen, dihydrate;Zincate,bis[carbonato]pentaoxapenta-,tetrahydrogen,dihydrate;Hydroxide Pure Basic Zinc Carbonate
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Description
In the unfathomable expanse of the chemical cosmos, zinc bicarbonate emerges as a captivating entity, adorned with a distinctive allure and a myriad of attributes. This compound, scientifically designated as C2H2O6Zn, is a shimmering gem in the scientific firmament, bearing a unique CAS number 5970-47-8 that serves as a distinctive scientific fingerprint. Its mere existence underscores the intricate labyrinth of molecular architectures, offering researchers a fascinating subject of inquiry. Visualized as a celestial body, zinc bicarbonate captivates the observer's gaze with its striking visual appeal. It commonly presents itself in the guise of a dry, pristine white powder, resembling miniature snowflakes that have gently cascaded together, creating a visually striking contrast amidst the myriad of chemical compounds. Its density, consistently hovering between 4.42 and 4.45, imbues it with a unique ability to manipulate the delicate balance of chemical reactions, thereby modulating the pace at which these reactions unfold. This remarkable compound holds within its molecular structure the potential to revolutionize the realms of pharmaceuticals and fine chemicals. In drug synthesis, zinc bicarbonate assumes the role of a precision-guided catalyst, skillfully directing the course of chemical reactions. It enables a more efficient generation of targeted drug molecules, minimizing the formation of unwanted by-products and enhancing the purity and yield of the final product. This not only accelerates the drug development process but also contributes to the advancement of personalized medicine, where tailor-made treatments can be designed to cater to individual patients' needs. In the domain of fine chemicals, zinc bicarbonate unlocks a palette of vibrant hues, serving as a facilitator in the directed synthesis of specific functional molecules. Be it the creation of vivid dyes for textiles and paintings, or the development of specialized plastic additives that imbue our everyday objects with a range of colors and improved properties, zinc bicarbonate plays a pivotal role in infusing our world with a spectrum of visual delight.
White fine amorphous powder. Odorless and tasteless. Insoluble in water and alcohol, slightly soluble in ammonia. Soluble in dilute acid and sodium hydroxide.
ZINC CARBONATE BASIC Use and Manufacturing
Zinc bicarbonate, a compound that has been garnering increasing attention in the scientific community, is emerging as a game-changer in the realms of pharmaceuticals and environmental protection. This compound, with its unique green chemistry characteristics, is poised to revolutionize the way we approach sustainable practices in the chemical industry. The foundation of green chemistry lies in minimizing the environmental impact of chemical processes, and zinc bicarbonate exemplifies this principle. Its by-products have a relatively minor effect on the environment, making it a promising candidate for the realization of green chemistry concepts. By integrating this catalyst into chemical processes, the industry can effectively decrease harmful emissions and reduce energy consumption, fostering a more sustainable production model. However, the journey to fully harness the potential of zinc bicarbonate is not without its challenges. Researchers are actively engaged in developing innovative synthetic strategies to enhance its preparation process, aiming to increase yields and purity. The complexity of its molecular structure offers a wealth of opportunities for exploration. By meticulously tuning its crystal structure, scientists aspire to uncover new catalytically active sites, which could potentially enhance its catalytic efficiency and specificity. Moreover, addressing practical concerns is equally crucial. Balancing catalytic activity with the reduction of unwanted side reactions and enhancing reaction safety are key areas of research. The transition from laboratory-scale to large-scale production necessitates cost reduction and improved economic feasibility. These challenges, though daunting, have not deterred the scientific community from seeking viable solutions. Zinc bicarbonates, as a class of organometallic compounds, hold a prominent position in the chemical landscape due to their intricate properties and broad application potential. Their versatility spans across various industries, from pharmaceuticals, where they could aid in the development of more eco-friendly drugs, to environmental remediation, where they might contribute to the detoxification of contaminated sites. With the relentless advancement of science and technology, the future of zinc bicarbonate research appears promising. More groundbreaking discoveries and technological innovations are anticipated, which will further unravel the intricacies of this compound and unlock its untapped potential. These advancements will not only deepen our understanding of zinc bicarbonate but also contribute significantly to the progression of human society and the pursuit of sustainable development.
Zinc Carbonate Basic was used for the production of light astringent and latex products, skin protectants, rayon and desulfurizers
Computed Properties
Molecular Weight:187.4
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:6
Exact Mass:185.914280
Monoisotopic Mass:185.914280
Topological Polar Surface Area:121
Heavy Atom Count:9
Complexity:24.8
Covalently-Bonded Unit Count:3
Compound Is Canonicalized:Yes
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