1633-05-2

  • Product NameStrontium carbonate
  • Molecular FormulaSrCO3
  • Molecular Weight147.629
  • Purity99%
  • AppearanceMilky white free flowing powder
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Product Details

Quick Details

  • CasNo: 1633-05-2
  • Molecular Formula: SrCO3
  • Appearance: Milky white free flowing powder
  • Purity: 99%

Reliable Quality Factory Supply Strontium carbonate 1633-05-2 Efficient Shipping

  • Molecular Formula:SrCO3
  • Molecular Weight:147.629
  • Appearance/Colour:Milky white free flowing powder 
  • Vapor Pressure:2.58E-05mmHg at 25°C 
  • Melting Point:1497 °C 
  • Boiling Point:333.6 °C at 760 mmHg 
  • Flash Point:169.8 °C 
  • PSA:63.19000 
  • Density:3.7 g/mL at 25 °C(lit.) 
  • LogP:-2.44700 

Strontium carbonate(Cas 1633-05-2) Usage

InChI:InChI=1/CH2O3.Sr/c2-1(3)4;/h(H2,2,3,4);/q;+2/p-2

1633-05-2 Relevant articles

Hydrogen Bonding in Amorphous Alkaline Earth Carbonates

Leukel, Sebastian,Mondeshki, Mihail,Tremel, Wolfgang

, p. 11289 - 11298 (2018)

Amorphous intermediates play a crucial r...

Syntheses, structure and properties of Alkaline-earth metal salts of 4-Nitrophenylacetic acid

Srinivasan, Bikshandarkoil R,Dhavskar, Kiran T,N?ther, Christian

, p. 1765 - 1774 (2016)

The synthesis, crystal structure, spectr...

Synthesis and characterization of strontium carbonate nanowires with a axis orientation and dendritic nanocrystals

Huang, Qing,Gao, Lian,Cai, Ye,Aldinger, Fritz

, p. 290 - 291 (2004)

Strontium carbonate nanowires that grow ...

Direct synthesis of Sr3Al2(OH)12 from solution for preparation of fine-grained Sr3Al2O6 phosphors at low temperature

Qi, Jianquan,Zhang, Xinyi,Han, Xiumei,Li, Yuanyuan,Wu, Xueyang,Zhong, Ruixia,Guo, Rui

, p. 421 - 426 (2016)

The precursors Sr3Al2(OH)12 can be direc...

Electrical characterization of strontium tartrate single crystals

Arora,Patel, Vipul,Patel,Amin, Brijesh,Kothari, Anjana

, p. 965 - 973 (2004)

The a.c. and d.c. conductivity of SrC4H4...

Localization of Co2- anion radicals in strontium carbonate obtained by thermal decomposition of strontium oxalate

Stoyanova, R.,Angelov, S.,Bozhilov, K.

, p. 1163 - 1170 (1990)

Mn2+ EPR probes and transmission electro...

Single-step synthesis of SrMoO4 particles from SrSO4 and their anti-corrosive activity

Diaz-Algara,Rendón-Angeles,Matamoros-Veloza,Yanagisawa,Rodriguez-Galicia,Rivera-Cobo

, p. 73 - 84 (2014)

The transformation of three different si...

Ca(II), Sr(II) and Ba(II) ion interaction with the rheumatoid arthritis drug tenoxicam: Structural, thermal, and biological characterization

Adam, Abdel Majid A.

, (2018)

Recently, one of the most common conditi...

Solvothermal synthesis of fusiform hexagonal prism SrCO3 microrods via ethylene glycol solution

Shi, Liange,Du, Fanglin

, p. 1550 - 1555 (2007)

Fusiform hexagonal prism SrCO3 microrods...

Room temperature syntheses and thermal behaviors of hydrogarnets Sr3M2(OH)12 (M = Al, Cr and Fe)

Chen, Yun-Feng,Yang, Zhi,Li, Yong-Ming,Guo, Jing,Fu, Wen-Fu,Wang, Ying-Xia,Liao, Fu-Hui,Li, Jianye

, p. 248 - 252 (2015)

Hydrogarnets Sr3M2(OH)12 (M = Al, Cr and...

Heat capacity and thermal expansion coefficient of SrCeO3(s) and Sr2CeO4(s)

Sahu, Manjulata,Krishnan,Nagar,Saxena,Dash, Smruti

, p. 167 - 176 (2011)

SrCeO3(s) and Sr2CeO4(s) were synthesize...

One-pot synthesis and microwave absorbing properties of ultrathin SrFe12O19 nanosheets

Dong, Shenhui,Lin, Chucheng,Meng, Xianfeng

, p. 779 - 784 (2019)

Ultrathin SrFe12O19 nanosheets were succ...

Mechanical and thermal carbonation of strontium ferrite SrFeOx

Schmidt

, p. 2093 - 2105 (2002)

Reaction of non-stoichiometric SrFeOx (2...

Photoluminescence of the SrS:Mn2+ phosphor and Pb 2+-sensitized luminescence of the SrS:Pb2+, Mn 2+ phosphor

Matsuyama, Isamu,Yamashita, Nobuhiko,Nakamura, Kaizo

, p. 741 - 751 (1989)

Emission and excitation spectra of the M...

Electrochemical study of cathodic electroprecipitation of strontium hydroxide films from dimethyl sulfoxide-based solvents

Lepiller,Poissonnet,Legendre,Giunchi

, p. D30-D40 (2003)

Films of strontium hydroxide and related...

Comparative study regarding the formation of La1-xSr xCrO3 perovskite using unconventional synthesis methods

Iano?,P?curariu,Laz?u,Iano?ev,Ecsedi,Lazǎu,Barvinschi

, p. 343 - 348 (2008)

The synthesis of strontium-doped lanthan...

Preparation, crystal structure, thermal decomposition mechanism and thermodynamical properties of [Yb(NTO)3(H2O)4]·6H2O and [Sr(NTO)2(H2O)4]·2H2O

Jirong, Song,Rongzu, Hu,Bing, Kang,Fuping, Li

, p. 49 - 60 (1999)

[Yb(NTO)3(H2O)4]·6H2O was prepared by mi...

Growth of La1-xSrxFeO3 thin films by atomic layer deposition

Lie, Martin,Nilsen, Ola,Fjellvag, Helmer,Kjekshus, Arne

, p. 481 - 489 (2009)

Thin films of La1-xSrxFeO3 have been pre...

Oxygen permeability and ionic conductivity of perovskite-related La0.3Sr0.7Fe(Ga)O3-δ

Kharton,Yaremchenko,Viskup,Patrakeev,Leonidov,Kozhevnikov,Figueiredo,Shaulo,Naumovich,Marques

, p. E125-E135 (2002)

The oxygen ionic conductivity of La0.3Sr...

Electrodeposition of oriented SrCO3 coatings on stainless steel substrates

Joseph, Sumy,Kamath, P. Vishnu

, p. D99-D103 (2006)

Cathodic reduction of a strontium bicarb...

Facile conversion of layered ruddlesden-popper-related structure y 2O3-doped Sr2CeO4 into fast oxide ion-conducting fluorite-type y2O3-doped CeO2

Gerlach, Ryan Georg,Bhella, Surinderjit Singh,Thangadurai, Venkataraman

, p. 257 - 266 (2009)

The present work shows a new solid- and ...

Thermal investigation of strontium acetate hemihydrate in nitrogen gas

Duan,Li,Yang,Cao,Hu,Wang,Liu,Wang

, p. 169 - 174 (2008)

The thermal decomposition of strontium a...

Transport properties of LaSrNi1-xScxOy solid solutions

Savchenko,Makhnach,Emel'yanova,Pan'kov

, p. 788 - 793 (2006)

The formation of LaSrNiO4- and LaSrScO4-...

Preparation and characterization of monodispersed YSZ nanocrystals

Pang, Guangsheng,Chen, Siguang,Zhu, Yingchun,Palchik, Oleg,Koltypin, Yuri,Zaban, Afie,Gedanken, Aharon

, p. 4647 - 4652 (2001)

A novel method for large-scale preparati...

Thermal decomposition study [MCu(C3H2O4)2(H2O) n] phases (M is Ca (n = 3), Sr and Ba (n = 4))

Insausti,Gil De Muro,Lorente,Rojo,Bocanegra,Arriortua

, p. 81 - 90 (1996)

Three new compounds with the general for...

Preparation and formation mechanism of three-dimensionally ordered macroporous (3DOM) MgO, MgSO4, CaCO3, and SrCO 3, and photonic stop band properties of 3DOM CaCO3

Sadakane, Masahiro,Kato, Rika,Murayama, Toru,Ueda, Wataru

, p. 2299 - 2305 (2011)

Three-dimensionally ordered macroporous ...

Effects of nanostructure on catalytic degradation of ethanol on SrCO 3 catalysts

Wang, Li,Zhu, Yongfa

, p. 5118 - 5123 (2005)

Degradation of ethanol over SrCO3 nanowi...

Strontium ferrite nanoparticles synthesized in presence of polyvinylalcohol: Phase composition, microstructural and magnetic properties

Veverka,Kní?ek,Pollert,Bohá?ek,Vasseur,Duguet,Portier

, p. 106 - 112 (2007)

Systematic study was devoted to the synt...

Dry mechanochemical conversion of SrSO4 to SrCO3

Setoudeh,Welham,Azami

, p. 389 - 391 (2010)

The effect of milling time on the dry co...

Thermal expansion, microhardness and oxygen permeation of La1-xSrxCo0.8Fe0.2O3+δ membranes

Aliyatulmuna,Utomo,Burhan,Fansuri,Murwani

, p. 2191 - 2196 (2017)

Dense ceramic membranes acting as oxygen...

An easy method to prepare nanowire

Wang, Li,Zhu, Yongfa

, p. 594 - 595 (2003)

SrCO3 nanowires and BaCO3 nanowires with...

Nanophase formation of strontium hexaferrite fine powder by the sonochemical method using Fe(CO)5

Sivakumar,Gedanken,Zhong,Du,Bhattacharya,Yeshurun,Felner

, p. 95 - 104 (2004)

A fine strontium hexaferrite powder has ...

Hydrogen separation using proton-conducting perovskites

Matsumoto, Hiroshige,Shimura, Tetsuo,Iwahara, Hiroyasu,Higuchi, Tohru,Yashiro, Keiji,Kaimai, Atsushi,Kawada, Tatsuya,Mizusaki, Junichiro

, p. 456 - 462 (2006)

Two methods of hydrogen separation using...

Shape evolution of SrCO3 particles in the presence of poly-(styrene-alt-maleic acid)

Yu, Jiaguo,Guo, Hua,Cheng, Bei

, p. 800 - 803 (2006)

In this paper, strontium carbonate parti...

Hydrogen permeation and chemical stability of In-doped SrCe 0.95Tm0.05O3-δ membranes

Yuan, Wenhui,Xiao, Chichi,Li, Li

, p. 142 - 147 (2014)

A series of SrCe0.95-xIn xTm0.05O3-δ (x ...

Reactions within the system, 2SrCO3-Fe2O3: Part I. CO2 atmosphere

Gallagher,Sanders,Woodward,Lokuhewa

, p. 217 - 223 (2005)

Simultaneous TG/DSC and high temperature...

Qualitative study on the reaction of Bi1.8Pb0.4Ca2Sr2Cu3Oy superconductor with water

Wei,Wang,Kao

, p. 179 - 181 (1993)

When Bi1.8Pb0.4Ca2Sr2Cu3Oy powders were ...

Two three-dimensional metal-organic frameworks constructed from alkaline earth metal cations (Sr and Ba) and 5-nitroisophthalicacid - Synthesis, charaterization, and thermochemistry

Chen, Sanping,Shuai, Qi,Gao, Shengli

, p. 1591 - 1596 (2008)

Two MOFs of [SrII(5-NO2-BDC)(H2O) 6] (1)...

Influence Ca-doped SrIn2O4 powders on photoluminescence property prepared one step by ultrasonic spray pyrolysis

Medeiros,Santiago,Ferreira,Li,Longo,Bomio,Motta

, p. 1078 - 1087 (2018)

Crystalline Ca-doped SrIn2O4 structures ...

A novel spray-pyrolysis technique to produce nanocrystalline lanthanum strontium manganite powder

Kumar, Abhoy,Devi, Parukuttyamma Sujatha,Das Sharma, Abhijit,Maiti, Himadri Sekhar

, p. 971 - 973 (2005)

Nanocrystalline, single phase, and highl...

Freeze dried strontium and iron acetate as reactive precursor for the iron-strontium-oxide complex

Langbein,Roesler,Boerger

, p. 911 - 927 (2004)

The thermal decomposition of reactive fr...

Tetrahedrally Coordinated sp3-Hybridized Carbon in Sr2CO4Orthocarbonate at Ambient Conditions

Spahr, Dominik,Binck, Jannes,Bayarjargal, Lkhamsuren,Luchitskaia, Rita,Morgenroth, Wolfgang,Comboni, Davide,Milman, Victor,Winkler, Bj?rn

supporting information, p. 5419 - 5422 (2021/05/04)

We have synthesized the orthocarbonate S...

Sr3[CO4]O Antiperovskite with Tetrahedrally Coordinated sp3-Hybridized Carbon and OSr6Octahedra

Spahr, Dominik,K?nig, Jannes,Bayarjargal, Lkhamsuren,Gavryushkin, Pavel N.,Milman, Victor,Liermann, Hanns-Peter,Winkler, Bj?rn

, p. 14504 - 14508 (2021/10/01)

We have synthesized the orthocarbonate S...

1633-05-2 Process route

Sr<sub>2</sub>FeMoO<sub>6</sub>

Sr2FeMoO6

water
7732-18-5

water

iron(II) oxide
1345-25-1

iron(II) oxide

strontium(II) carbonate
1633-05-2

strontium(II) carbonate

strontium molybdate

strontium molybdate

Conditions
Conditions Yield
With carbon dioxide; In neat (no solvent); byproducts: O2; Sr-Mo compd. was reacted with H2O;
 
Sr<sub>2</sub>Fe<sub>2</sub>O<sub>6</sub>

Sr2Fe2O6

water
7732-18-5

water

iron(II) oxide
1345-25-1

iron(II) oxide

strontium(II) carbonate
1633-05-2

strontium(II) carbonate

strontium ferrite

strontium ferrite

Conditions
Conditions Yield
With carbon dioxide; In neat (no solvent); Sr-Fe compd. was reacted with H2O;
 

1633-05-2 Upstream products

  • 584-08-7
    584-08-7

    potassium carbonate

  • 10476-85-4
    10476-85-4

    strontium chloride

  • 7732-18-5
    7732-18-5

    water

  • 3685-67-4
    3685-67-4

    strontium cyanamide

1633-05-2 Downstream products

  • 124-38-9
    124-38-9

    carbon dioxide

  • 7664-41-7
    7664-41-7

    ammonia

  • 7732-18-5
    7732-18-5

    water

  • 10476-85-4
    10476-85-4

    strontium chloride

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