Sodium hypophosphite hydrate - 95%, high purity , CAS No.123333-67-5

  • ≥95%
Item Number
S486577
Grouped product items
SKUSizeAvailabilityPrice Qty
S486577-100g
100g
In stock
$53.90
S486577-500g
500g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$149.90
View related series
inorganic salt

Basic Description

SynonymsSodium phosphinate hydrate | DTXSID40143243 | Sodium hypophosphite hydrate | Sodium phosphenite hydrate | Sodium hypophosphite monohydrate | AKOS015911117 | SODIUM HYPOPHOSPHITE, MONOHYDRATE | FT-0653627 | AKOS015912627 | SODIUM PHOSPHINATE MONOHYDRATE
Specifications & Purity≥95%
Storage TempArgon charged
Shipped InNormal
Product Description

Sodium hypophosphite hydrate can be used as:

A radical precursor to synthesize mono alkyl phosphinic acids via radical reaction with alkenes in the presence of Et3B as the initiator.

A reagent for the reduction of the diazonium salt.

A hydrogen donor in the transfer-hydrogenation reactions.

A catalyst in the esterification reaction.

It can also be used to compose the finishing solutions for the immobilization of photo-initiator (benzophenone ) onto cotton fabrics.

Sodium hypophosphite hydrate is widely used as an esterification catalyst. It may be used to compose the finishing solutions for the incorporation of benzophenone (photoinitiator) onto cotton fabrics.

Names and Identifiers

INCHI InChI=1S/Na.HO2P.H2O/c;1-3-2;/h;(H,1,2);1H2/q+1;;/p-1
InChi Key ACUGTEHQOFWBES-UHFFFAOYSA-M
Canonical SMILES O.[Na+].OP[O-]
Isomeric SMILES O.[O-]P=O.[Na+]
WGK Germany 2
Alternate CAS 7681-53-0;10039-56-2
PubChem CID 23708894
Molecular Weight 87.98 (anhydrous basis)

Certificates

Certificate of Analysis(COA)

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17 results found

Lot NumberCertificate TypeDateItem
K2412629Certificate of AnalysisOct 25, 2024 S486577
K2412600Certificate of AnalysisOct 25, 2024 S486577
K2412599Certificate of AnalysisOct 25, 2024 S486577
H2429165Certificate of AnalysisAug 05, 2024 S486577
H2429167Certificate of AnalysisAug 05, 2024 S486577
H2429166Certificate of AnalysisAug 05, 2024 S486577
C2429229Certificate of AnalysisMar 15, 2024 S486577
C2429231Certificate of AnalysisMar 15, 2024 S486577
C2429228Certificate of AnalysisMar 15, 2024 S486577
C2429227Certificate of AnalysisMar 15, 2024 S486577
A2409062Certificate of AnalysisFeb 13, 2023 S486577
I2311068Certificate of AnalysisFeb 13, 2023 S486577
K2314076Certificate of AnalysisFeb 13, 2023 S486577
K2314077Certificate of AnalysisFeb 13, 2023 S486577
C2309690Certificate of AnalysisFeb 13, 2023 S486577
C2309689Certificate of AnalysisFeb 13, 2023 S486577
C2309687Certificate of AnalysisFeb 13, 2023 S486577

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Chemical and Physical Properties

SensitivityMoisture sensitive

Safety and Hazards(GHS)

WGK Germany 2
RIDADR NONHforallmodesoftransport

Related Documents

Citations of This Product

1. Mojie sun, Bixue Gao, Shijie Wang, Chi Wang, Dongyao Lin, Xiaochen Song, Zhao Wang.  (2020)  Study on the Electrocatalytic Performance of Porous Conductive Materials Based on an In Situ Growth of Bimetal Phosphides with Plasma.  International Journal of Electrochemical Science,  15  (3242).  [PMID:] [10.20964/2020.04.46]
2. Shuaizhen Li, Zhibo Zheng, Siwei Liu, Zhenguo Chi, Yi Zhang, Jiarui Xu.  (2023)  Flexible graphite films with high cross-plane thermal conductivity prepared by graphitization of polyimide catalyzed by Ni-coated-CNTs.  Journal of Materials Chemistry C,  11  (28): (9527-9538).  [PMID:] [10.1039/D3TC01446K]
3. Ben Chong, Mengyang Xia, Yang Lv, He Li, Xiaoqing Yan, Bo Lin, Guidong Yang.  (2023)  Hierarchical phosphorus-oxygen incorporated cobalt sulfide hollow micro/nano-reactor for highly-efficient electrocatalytic overall water splitting.  CHEMICAL ENGINEERING JOURNAL,  465  (142853).  [PMID:] [10.1016/j.cej.2023.142853]
4. Nannan Ma, Chuanqi Fei, Jing Wang, Yinling Wang.  (2022)  Fabrication of NiFe-MOF/cobalt carbonate hydroxide hydrate heterostructure for a high-performance electrocatalyst of oxygen evolution reaction.  JOURNAL OF ALLOYS AND COMPOUNDS,  917  (165511).  [PMID:] [10.1016/j.jallcom.2022.165511]
5. Keyu Tao, Huamei Dan, Yang Hai, Li Liu, Yun Gong.  (2019)  Ultrafine Co2P anchored on porous CoWO4 nanofiber matrix for hydrogen evolution: Anion-induced compositional/morphological transformation and interfacial electron transfer.  ELECTROCHIMICA ACTA,  328  (135123).  [PMID:] [10.1016/j.electacta.2019.135123]

References

1. Mojie sun, Bixue Gao, Shijie Wang, Chi Wang, Dongyao Lin, Xiaochen Song, Zhao Wang.  (2020)  Study on the Electrocatalytic Performance of Porous Conductive Materials Based on an In Situ Growth of Bimetal Phosphides with Plasma.  International Journal of Electrochemical Science,  15  (3242).  [PMID:] [10.20964/2020.04.46]
2. Shuaizhen Li, Zhibo Zheng, Siwei Liu, Zhenguo Chi, Yi Zhang, Jiarui Xu.  (2023)  Flexible graphite films with high cross-plane thermal conductivity prepared by graphitization of polyimide catalyzed by Ni-coated-CNTs.  Journal of Materials Chemistry C,  11  (28): (9527-9538).  [PMID:] [10.1039/D3TC01446K]
3. Ben Chong, Mengyang Xia, Yang Lv, He Li, Xiaoqing Yan, Bo Lin, Guidong Yang.  (2023)  Hierarchical phosphorus-oxygen incorporated cobalt sulfide hollow micro/nano-reactor for highly-efficient electrocatalytic overall water splitting.  CHEMICAL ENGINEERING JOURNAL,  465  (142853).  [PMID:] [10.1016/j.cej.2023.142853]
4. Nannan Ma, Chuanqi Fei, Jing Wang, Yinling Wang.  (2022)  Fabrication of NiFe-MOF/cobalt carbonate hydroxide hydrate heterostructure for a high-performance electrocatalyst of oxygen evolution reaction.  JOURNAL OF ALLOYS AND COMPOUNDS,  917  (165511).  [PMID:] [10.1016/j.jallcom.2022.165511]
5. Keyu Tao, Huamei Dan, Yang Hai, Li Liu, Yun Gong.  (2019)  Ultrafine Co2P anchored on porous CoWO4 nanofiber matrix for hydrogen evolution: Anion-induced compositional/morphological transformation and interfacial electron transfer.  ELECTROCHIMICA ACTA,  328  (135123).  [PMID:] [10.1016/j.electacta.2019.135123]

Solution Calculators