Determine the necessary mass, volume, or concentration for preparing a solution.
This is a demo store. No orders will be fulfilled.
| SKU | Size | Availability |
Price | Qty |
|---|---|---|---|---|
|
C472574-100g
|
100g |
3
|
$45.90
|
|
|
C472574-500g
|
500g |
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
|
$136.90
|
|
| Synonyms | CUPRIC ACETATE MONOHYDRATE [MI] | FT-0624043 | J-520115 | copper (II) acetate mono hydrate | Copper (II) Acetate Monohydrate | 39J9V52S86 | copper acetate-monohydrate | AKOS015907686 | Copper(2+) acetate, monohydrate | Cupric acetate monohydrate | COPPER |
|---|---|
| Specifications & Purity | ≥98% |
| Storage Temp | Argon charged |
| Shipped In | Normal |
Taxonomy Tree
| Kingdom | Organic compounds |
|---|---|
| Superclass | Organic acids and derivatives |
| Class | Carboxylic acids and derivatives |
| Subclass | Carboxylic acid derivatives |
| Intermediate Tree Nodes | Carboxylic acid salts |
| Direct Parent | Acetate salts |
| Alternative Parents | Monocarboxylic acids and derivatives Carboxylic acids Organic oxides Organic copper salts Hydrocarbon derivatives Carbonyl compounds |
| Molecular Framework | Not available |
| Substituents | Acetate salt - Organic transition metal salt - Monocarboxylic acid or derivatives - Carboxylic acid - Organic oxygen compound - Organic oxide - Hydrocarbon derivative - Organic copper salt - Organic salt - Organooxygen compound - Carbonyl group - Aliphatic acyclic compound |
| Description | This compound belongs to the class of organic compounds known as acetate salts. These are organic compounds containing acetic acid as its acid component. |
| External Descriptors | Not available |
|
|
|
| IUPAC Name | copper;diacetate;hydrate |
|---|---|
| INCHI | InChI=1S/2C2H4O2.Cu.H2O/c2*1-2(3)4;;/h2*1H3,(H,3,4);;1H2/q;;+2;/p-2 |
| InChIKey | NWFNSTOSIVLCJA-UHFFFAOYSA-L |
| Smiles | CC(=O)[O-].CC(=O)[O-].O.[Cu+2] |
| Isomeric SMILES | CC(=O)[O-].CC(=O)[O-].O.[Cu+2] |
| Alternate CAS | 6046-93-1 |
| UN Number | 3077 |
| Molecular Weight | 181.63 (anhydrous basis) |
| Reaxy-Rn | 3730548 |
| Reaxys-RN_link_address | https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=3730548&ln= |
Find and download the COA for your product by matching the lot number on the packaging.
| Lot Number | Certificate Type | Date | Item |
|---|---|---|---|
| Certificate of Analysis | Jan 08, 2025 | C472574 | |
| Certificate of Analysis | Jan 08, 2025 | C472574 | |
| Certificate of Analysis | Jan 08, 2025 | C472574 | |
| Certificate of Analysis | Jan 07, 2025 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 | |
| Certificate of Analysis | Aug 15, 2023 | C472574 |
| Sensitivity | Moisture sensitive |
|---|---|
| Flash Point(°F) | Not applicable |
| Flash Point(°C) | Not applicable |
| Molecular Weight | 199.650 g/mol |
| XLogP3 | |
| Hydrogen Bond Donor Count | 1 |
| Hydrogen Bond Acceptor Count | 5 |
| Rotatable Bond Count | 0 |
| Exact Mass | 198.967 Da |
| Monoisotopic Mass | 198.967 Da |
| Topological Polar Surface Area | 81.300 Ų |
| Heavy Atom Count | 10 |
| Formal Charge | 0 |
| Complexity | 25.500 |
| Isotope Atom Count | 0 |
| Defined Atom Stereocenter Count | 0 |
| Undefined Atom Stereocenter Count | 0 |
| Defined Bond Stereocenter Count | 0 |
| Undefined Bond Stereocenter Count | 0 |
| The total count of all stereochemical bonds | 0 |
| Covalently-Bonded Unit Count | 4 |
| 1. Lufang Fan, Sheng Feng, Kai Wei, Xiaojun Dai, Weijie Zhang, Haihong Wang, Zhaowei Bian, Kaidi Wu, Zhiwen Ge, Jinghao Hua. (2024) Z-scheme Cu0.5Cd0.5S/MoO3-x photocatalyst with synergistic localized surface plasmon resonance effect for efficient photocatalytic hydrogen evolution. SEPARATION AND PURIFICATION TECHNOLOGY, 330 (125286). |
| 2. Yan Mao, Shiying Fan, Xinyong Li, Jugong Shi, Mufan Wang, Zhaodong Niu, Guohua Chen. (2023) Trash to treasure: electrocatalytic upcycling of polyethylene terephthalate (PET) microplastic to value-added products by Mn0.1Ni0.9Co2O4-δ RSFs spinel. JOURNAL OF HAZARDOUS MATERIALS, 457 (131743). |
| 3. Jiong Wang, Zhibin Liu, Zhirong Sun. (2023) In-situ cathode induction of HKUST-1-derived polyvalent copper oxides in electro-Fenton systems for effective sulfamethoxazole degradation. SEPARATION AND PURIFICATION TECHNOLOGY, 316 (123773). |
| 4. Li Hua, Taozhi Cheng, Ting Wei. (2023) Study on copper oxide modified biochar for activating persulfate high efficiency and application for the removal of bisphenol A. Environmental Progress & Sustainable Energy, 42 (5): (e14140). |
| 5. Chongchao Zhang, Hang Yin, Xiao Bai, Ziyin Yang. (2023) Ru doping induced lattice distortion of Cu nanoparticles for boosting electrochemical nonenzymatic hydrogen peroxide sensing. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 666 (131311). |
| 6. Junshuai Zhang, Cui Du, Chen Zhou, Shengyang Yang. (2023) Highly efficient splitting of benzyl alcohol for the production of hydrogen and benzaldehyde using synergistic CuNi/CdS photocatalysts. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 122 (292). |
| 7. Jie Tao, Feihao Yang, Tao Wu, Junjiao Shi, Hai-Bo Zhao, Wenhui Rao. (2023) Thermal insulation, flame retardancy, smoke suppression, and reinforcement of rigid polyurethane foam enabled by incorporating a P/Cu-hybrid silica aerogel. CHEMICAL ENGINEERING JOURNAL, 461 (142061). |
| 8. Zhihao Zhang, Jinghong Wen, Jie Zhang, Donggang Guo, Quanxi Zhang. (2022) Vacancy-Modulated of CuS for Highly Antibacterial Efficiency via Photothermal/Photodynamic Synergetic Therapy. Advanced Healthcare Materials, 12 (1): (2201746). |
| 9. Simeng Wu, Jing Qiao, Yunxiang Tang, Xue Zhang, Xiangwei Meng, Shuyan Hao, Haoyuan Tian, Baoding Li, Xiaoyang Zuo, Jiurong Liu, Lili Wu, Zhou Wang, Fenglong Wang. (2023) Heterogeneous Cu9S5/C nanocomposite fibers with adjustable electromagnetic parameters for efficient electromagnetic absorption. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 630 (47). |
| 10. Zhaodong Niu, Shiying Fan, Xinyong Li, Penglei Wang, Zhiyuan Liu, Jing Wang, Chunpeng Bai, Dongke Zhang. (2022) Bifunctional copper-cobalt spinel electrocatalysts for efficient tandem-like nitrate reduction to ammonia. CHEMICAL ENGINEERING JOURNAL, 450 (138343). |
| 11. Xinyu Jin, Hongxia Zhao, Zhicong Chao, Xiaofeng Wang, Qing Zhang, Huangxian Ju, Ying Liu. (2022) Self-assembled Cupric Oxide Nanoclusters for Highly efficient chemodynamic therapy. Chemistry-An Asian Journal, 17 (16): (e202200296). |
| 12. Pei Qiu, Yong Zhang, Gang Cheng. (2022) Precursor self-derived Cu@TiO2 hybrid Schottky junction for enhanced solar-to-hydrogen evolution. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 47 (10628). |
| 13. Xianhong Ye, Dingming Yu, Yalong Liao, Yang Si, Jianyong Yu, Xia Yin, Bin Ding. (2022) Copper hydroxide nanosheets-assembled nanofibrous membranes for anti-biofouling water disinfection. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 611 (1). |
| 14. Yuqiong Shi, Wei Liu, Xiangrong Wu, Jinhua Zhu, Danyang Zhou, Xiuhua Liu. (2021) A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro. Nanomaterials, 11 (11): (2854). |
| 15. Feng Ya-Jie, Wang Yang, Wang Kai-Wen, Ma Jiang-Ping, Duan You-Yu, Liu Jie, Lu Xu, Zhang Bin, Wang Guo-Yu, Zhou Xiao-Yuan. (2022) Ultra-fine Cu clusters decorated hydrangea-like titanium dioxide for photocatalytic hydrogen production. RARE METALS, 41 (2): (385-395). |
| 16. Junjun Fu, Jiayi Zhu, Yan Tian, Kui He, Huang Yu, Linlin Chen, Dongjun Fang, Dongmei Jia, Jinyi Xie, Hao Liu, Jiasheng Wang, Fangcheng Tang, Jinsong Tao, Jinbin Liu. (2020) Green and transparent cellulose nanofiber substrate-supported luminescent gold nanoparticles: A stable and sensitive solid-state sensing membrane for Hg(II) detection. SENSORS AND ACTUATORS B-CHEMICAL, 319 (128295). |
| 17. Zhi Liu, Detao Qin, Jianghui Zhao, Quan Feng, Zhengtao Li, Hongwei Bai, Darren Delai Sun. (2019) Efficient Oil/Water Separation Membrane Derived from Super-Flexible and Superhydrophilic Core–Shell Organic/Inorganic Nanofibrous Architectures. Polymers, 11 (6): (974). |
| 18. Jiachen Ge, Xuanyu Yang, Jiahang Luo, Junhao Ma, Yidong Zou, Jichun Li, Wei Luo, Xiaowei Cheng, Yonghui Deng. (2019) Ordered mesoporous CoO/CeO2 heterostructures with highly crystallized walls and enhanced peroxidase-like bioactivity. Applied Materials Today, 15 (482). |
| 19. Liu Zhi, Cao Rui, Wei Anfang, Zhao Jianghui, He Jihuan. (2019) Superflexible/superhydrophilic PVDF-HFP/CuO-nanosheet nanofibrous membrane for efficient microfiltration. Applied Nanoscience, 9 (8): (1991-2000). |
| 20. Botian Li, Wei Shao, Yanzan Wang, Da Xiao, Yi Xiong, Haimu Ye, Qiong Zhou, Qingjun Jin. (2019) Synthesis and Morphological Control of Biocompatible Fluorescent/Magnetic Janus Nanoparticles Based on the Self-Assembly of Fluorescent Polyurethane and Fe3O4 Nanoparticles. Polymers, 11 (2): (272). |
| 21. Zuming He, Yongmei Xia, Bin Tang, Jiangbin Su. (2017) Fabrication and photocatalytic property of magnetic NiFe2O4/Cu2O composites. Materials Research Express, 4 (9): (95501). |
| 22. Chen Li, Jieqiang Tan, Zhiwei Zhang, Dunyuan Tan, Xuejie Zhang, Haoran Zhang, Bingfu Lei, Yingliang Liu, Aiguo Yin, Mingtao Zheng. (2025) Copper and Nitrogen Codoped CDs for Alleviating the Damage of Reactive Oxygen Species for Cucumber Seedlings under Salt Stress. ACS Applied Bio Materials, |
| 23. Yajie Feng, Chi Lin, Yifei Huang, Bing Li, Yingxin He, Jiangping Ma, Chaogang Ban, Lujie Ruan, Hongxing Jia, Xiaoping Tao, Liyong Gan, Xiaoyuan Zhou. (2025) Harnessing metal-metal interactions for simultaneously boosting photocatalytic hydrogen and benzaldehyde production. CHEMICAL ENGINEERING JOURNAL, 506 (160044). |
| 24. Kaikai Xu, Lulu Kong, Kebin Ye, Beibei Xu, Yongming Deng, Yicheng Wang, Shaohua Wei. (2025) NiPc-Cu 2D MOF: Facile and scalable synthesis of an antimicrobial agent rivaling clinical antibiotics. INORGANIC CHEMISTRY COMMUNICATIONS, 177 (114343). |