Interesting facts
Interesting Facts About Triisopropyl Borate
Triisopropyl borate is a fascinating chemical compound with numerous applications across various fields. Here are some notable aspects:
- Versatile Solvent: Triisopropyl borate is often utilized as a solvent in organic synthesis, particularly due to its ability to dissolve a wide variety of organic compounds.
- Useful in Organometallic Chemistry: This compound plays a critical role in the preparation of boron-containing organometallic compounds, which are essential for various reactions and applications.
- As a Reagent: Chemists often use triisopropyl borate as a reagent in reactions that require the introduction of boron into organic molecules, thereby providing a method for functionalizing organic substrates.
- Flammability: It is important to handle triisopropyl borate with caution, as it is flammable and can pose safety risks if not stored and used properly. Always exercise appropriate safety measures when working with this compound.
- Potential Applications in Biotechnology: Research is ongoing to explore its applications in biochemistry, including its role in materials science and its potential influence in drug development.
"The discovery of new reactions using triisopropyl borate showcases its significance in the evolving landscape of organic chemistry." This quote encapsulates the ongoing exploration into the utility of boron compounds in modern research.
Not only does triisopropyl borate have significant industrial advantages, but it also represents the intersection of practicality and innovation within the chemical sciences. Whether in a lab setting or in the development of new technologies, this compound continues to make its mark.
Synonyms
TRIISOPROPYL BORATE
5419-55-6
Isopropyl borate
Triisopropyl orthoborate
tri-i-Propylborate
Boric acid (H3BO3), tris(1-methylethyl) ester
Boric acid, tris(1-methylethyl) ester
Tris(1-methylethyl) borate
EINECS 226-529-9
YWV817MXF3
UN2616
BRN 1701469
DTXSID7027598
AI3-61082
NSC-9779
UNII-YWV817MXF3
Boric acid, (H3BO3), triisopropyl ester
DTXCID607598
EC 226-529-9
4-01-00-01488 (Beilstein Handbook Reference)
ISOPROPYL BORATE ((C3H7O)3B)
UN 2616
Tripropan2yl borate
Boric acid, tris(1methylethyl) ester
Boric acid (H3BO3), tris(1methylethyl) ester
inchi=1/c9h21bo3/c1-7(2)11-10(12-8(3)4)13-9(5)6/h7-9h,1-6h
nhdiqvffndkaqu-uhfffaoysa-n
Triisopropoxyborane
Triisopropoxyboron
Boron isopropoxide
Boric acid triisopropyl ester
tripropan-2-yl borate
Trisisopropoxyborane
Triisopropoxy borane
Boric acid (H3BO3), triisopropyl ester
Boron triisopropoxide
tris(propan-2-yl) borate
triisopropylborate
Isopropyl borate, ((C3H7O)3B)
Boric acid, triisopropyl ester
NSC 9779
MFCD00008872
tri(isopropyl)borate
Tris(isopropyl) borate
Triisopropoxy boron
CAS-5419-55-6
Boric acid triisopropyl
triisopropyborate
triisopropyl borat
triisoproyl-borate
triisopropyl-borate
Tri-isopropylborate
triisopropoxylborane
tri isopropyl borate
tri-iso-propylborate
Tri-isopropyl borate
tri-isopropoxy borane
tris(isopropyl)borate
tris-iso-propylborate
tri(iso-propyl)borate
tri(isopropyl) borate
tri-iso-propyl borate
tri (i-propyl) borate
tri(iso-propyl) borate
(iPrO)3B
B(OiPr)3
Tris(propan-2-yl)borate
tris(1-methylethyl)borate
(i-PrO)3B
B(O-iPr)3
B(Oi-Pr)3
B(O-i-Pr)3
SCHEMBL38188
Triisopropyl borate, >=98%
CHEMBL1902909
NSC9779
STR03840
Tox21_201514
Tox21_303129
AKOS005259716
AT24467
FT54917
WLN: 1Y1&OBOY1&1&OY1&1
NCGC00164082-01
NCGC00164082-02
NCGC00256934-01
NCGC00259064-01
BP-30231
DB-030478
B0521
NS00004916
EN300-29557
A830025
Q2319620
Triisopropyl borate [UN2616] [Flammable liquid]
F0001-1425
Solubility of Triisopropyl Borate
Triisopropyl borate, with the chemical formula B(C3H6O)3, exhibits interesting solubility characteristics that are vital for its applications in both organic chemistry and industrial processes. Here are some key points regarding its solubility:
In summary, the solubility of triisopropyl borate in various solvents makes it a versatile compound, but its limited solubility in water serves as a reminder of the significant role that molecular structure plays in solubility behavior. As stated, "Like dissolves like," emphasizing the importance of polarity in predicting solvent interactions.