CHOLINE STABILIZED ORTHOSILICIC ACID OIL( CH-OSA OIL)

Basic information

  • Product Name:CHOLINE STABILIZED ORTHOSILICIC ACID OIL( CH-OSA OIL)
  • CasNo.:10193-36-9
  • MF:H4O4Si
  • MW:96.1149

Physical and Chemical Properties

  • Purity:99%
  • Boiling Point:
  • Packing:
  • Throughput:
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Product Details

CasNo: 10193-36-9

MF: H4O4Si

Good factory supply good CHOLINE STABILIZED ORTHOSILICIC ACID OIL( CH-OSA OIL) 10193-36-9

  • Molecular Formula:H4O4Si
  • Molecular Weight:96.1149
  • Vapor Pressure:1.333hPa at 25℃ 
  • Boiling Point:153-156 °C(Press: 2 Torr) 
  • PKA:12.39±0.53(Predicted) 
  • PSA:80.92000 
  • Density:1.77 g/cm3 
  • LogP:-2.60880 

tetrahydroxysilane(Cas 10193-36-9) Usage

Hazard

A poison.

InChI:InChI=1/4H2O.Si/h4*1H2;/q;;;;+4/p-4

10193-36-9 Relevant articles

Structural and Photoluminescence properties of nepheline-structure NaAlSiO4:Dy3+ nanophosphors

Kumar, Ashwini,Dhoble,Peshwe,Bhatt, Jatin

, p. 100 - 106 (2014)

Most of the phosphors are composed of kn...

Paralinear oxidation of silicon nitride in a water-vapor/oxygen environment

Fox, Dennis S.,Opila, Elizabeth J.,Nguyen, Quynh Giao N.,Humphrey, Donald L.,Lewton, Susan M.

, p. 1256 - 1261 (2003)

Three Si3N4 materials were exposed to dr...

Controlled growth of in situ silica in a NR/CR blend by a solution sol-gel method and the studies of its composite properties

Bansod, Naresh D.,Kapgate, Bharat P.,Das, Chayan,Basu, Debdipta,Debnath, Subhas Chandra,Roy, Kumarjyoti,Wiessner, Sven

, p. 53559 - 53568 (2015)

Silica is grown in situ into a natural r...

Zirconium phosphate combined with Ru/C as a highly efficient catalyst for the direct transformation of cellulose to C6 alditols

Liao, Yuhe,Liu, Qiying,Wang, Tiejun,Long, Jinxing,Ma, Longlong,Zhang, Qi

, p. 3305 - 3312 (2014)

The selective transformation of cellulos...

Influence of annealing temperature on structural and optical properties of SiO2:RE2O3 [RE = Y, Gd] powder

Ahlawat, Rachna

, p. 356 - 363 (2015)

SiO2:RE2O3 [RE = Y, Gd] powder were prep...

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Havill, M. E.,Joffe, I.,Post, H. W.

, p. 280 - 283 (1948)

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Interactions of water vapor with oxides at elevated temperatures

Jacobson, Nathan,Myers, Dwight,Opila, Elizabeth,Copland, Evan

, p. 471 - 478 (2005)

Many volatile metal hydroxides form by r...

Ionic Liquid-Hybrid Molecularly Imprinted Material-Filter Solid-Phase Extraction Coupled with HPLC for Determination of 6-Benzyladenine and 4-Chlorophenoxyacetic Acid in Bean Sprouts

Han, Yehong,Yang, Chunliu,Zhou, Yang,Han, Dandan,Yan, Hongyuan

, p. 1750 - 1757 (2017)

A new method involving ionic liquid-hybr...

Near-infrared spectroscopic study of [AlO4Al12(OH)23(H2O)12]7+-O-Si(OH)3 nitrate crystals formed by forced hydrolysis of Al3+ in the presence of TEOS.

Kloprogge,Ruan,Frost

, p. 2405 - 2411 (2000)

The polymer [AlO4Al12(OH)23(H2O)12]7+-O-...

Morphosynthesis of complex inorganic forms using pollen grain templates.

Hall, Simon R,Bolger, Helen,Mann, Stephen

, p. 2784 - 2785 (2003)

Porous micron-sized particles of silica,...

Effect of polyethylenimine on hydrolysis and dispersion properties of aqueous Si3N4 suspensions

Zhu, Xinwen,Uchikoshi, Tetsuo,Suzuki, Tohru S.,Sakka, Yoshio

, p. 797 - 804 (2007)

The roles of polyethylenimine (PEI) in t...

POLYMERIZATION OF SILICIC ACID ADSORBED ON ALUMINIUM HYDROXIDE

Yokoyama, Takushi,Nakamura, Osamu,Tarutani, Toshikazu

, p. 975 - 978 (1982)

Factors controlling the absorption of si...

Mass spectrometric identification of Si-O-H(g) species from the reaction of silica with water vapor at atmospheric pressure

Opila, Elizabeth J.,Fox, Dennis S.,Jacobson, Nathan S.

, p. 1009 - 1012 (1997)

A high-pressure sampling mass spectromet...

Investigation of the pH Dependence of the Kinetics of Quartz Dissolution at 25 deg C

House, William A.,Orr, Douglas R.

, p. 233 - 242 (1992)

The dissolution kinetics of two samples ...

Preparation and luminescence property of red-emitting hardystonite phosphors by near-ultraviolet irradiation

Yao, Shanshan,Xue, Lihong,Yan, Youwei,Yan, Mifang

, p. 1477 - 1482 (2011)

A1.95ZnSi2O7:Eu0.05 3+ (A=Ca, Sr, Ba) re...

The formation, precipitation and structural characterisation of hydroxyaluminosilicates formed in the presence of fluoride and phosphate

Strekopytov, Stanislav,Exley, Christopher

, p. 1585 - 1592 (2005)

Hydroxyaluminosilicates (HAS) are import...

Sonochemical synthesis of silica and silica sulfuric acid nanoparticles from rice husk ash: A new and recyclable catalyst for the acetylation of alcohols and phenols under heterogeneous conditions

Salavati-Niasari, Masoud,Javidi, Jaber

, p. 705 - 712 (2012)

Silica nanoparticles were synthesized fr...

A solution study of silica condensation and speciation with relevance to in vitro investigations of biosilicification

Belton, David J.,Deschaume, Olivier,Patwardhan, Siddharth V.,Perry, Carole C.

, p. 9947 - 9955 (2010)

Requiring mild synthesis conditions and ...

Poly(γ-glutamic acid)/silica hybrids with calcium incorporated in the silica network by use of a calcium alkoxide precursor

Poologasundarampillai, Gowsihan,Yu, Bobo,Tsigkou, Olga,Wang, Daming,Romer, Frederik,Bhakhri, Vineet,Giuliani, Finn,Stevens, Molly M.,McPhail, David S.,Smith, Mark E.,Hanna, John V.,Jones, Julian R.

, p. 8149 - 8160 (2014)

Current materials used for bone regenera...

METHOD FOR PRODUCING SILANOLS AND NOVEL SILANOLS

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Paragraph 0092, (2021/08/13)

PROBLEM TO BE SOLVED: To provide a metho...

Silanol Compound, Composition, and Method for Producing Silanol Compound

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Paragraph 0204; 0231-0234; 0240; 0241; 0248; 0260-0273, (2017/07/14)

The purpose of the present invention is ...

Hollow silica nanospheres and methods of making same

-

Page/Page column 27, (2016/02/03)

The disclosure provide hollow nanosphere...

10193-36-9 Process route

tetrakis-propionyloxy-silane
994-51-4

tetrakis-propionyloxy-silane

ethylmagnesium bromide
925-90-6

ethylmagnesium bromide

3-ethylpentan-3-ol
597-49-9

3-ethylpentan-3-ol

silicic Acid
10193-36-9,62647-18-1

silicic Acid

Conditions
Conditions Yield
 
 
 
 
ammonium hydroxide

ammonium hydroxide

PH<sub>2</sub>*SiH<sub>3</sub>

PH2*SiH3

sodium hydroxide
1310-73-2

sodium hydroxide

hydrogen
1333-74-0

hydrogen

phosphan
7803-51-2

phosphan

silicic Acid
10193-36-9,62647-18-1

silicic Acid

monosilane
7440-21-3

monosilane

Conditions
Conditions Yield
In neat (no solvent);
 
In neat (no solvent);
 

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