Interesting facts
Interesting Facts About Methanidylidynesilanylium
Methanidylidynesilanylium is an intriguing compound that showcases the diverse possibilities within the realm of chemistry. Here are some captivating facts about this unique structure:
- Unusual Structure: This compound features a complex molecular architecture, incorporating elements such as carbon, silicon, and hydrogen, which contribute to its unique chemical behavior.
- Reactivity: Methanidylidynesilanylium exhibits notable reactivity, making it a subject of interest for synthetic chemists exploring novel compounds for various applications.
- Potential Applications: Its potential applications could range from materials science to nanotechnology, where manipulating the properties of silicon-based compounds is crucial.
- Research Interest: Scientists are particularly drawn to compounds like methanidylidynesilanylium due to their relevance in developing advanced materials, catalysis, and even in the fields of quantum chemistry.
As a compound that sits at the intersection of fundamental chemistry and practical applications, methanidylidynesilanylium serves as a reminder that the study of chemical compounds continually opens new avenues for exploration and innovation.
In the words of a prominent chemist: "Chemistry is not just a science—it's an art form that allows us to paint the future with the colors of possibility."
Synonyms
SILICON CARBIDE
409-21-2
Carborundum
Silicon monocarbide
Crystar
Silicon carbide (SiC)
Carborundeum
Betarundum
Carbolon
Silundum
Tokawhisker
Nicalon
Carbon silicide
Green densic
Betarundum UF
Carbofrax M
Annanox CK
Betarundum ST-S
Crystolon 37
Crystolon 39
Betarundum ultrafine
Hitaceram SC 101
SC 9 (Carbide)
Densic C 500
methanidylidynesilanylium
Green densic GC 800
KZ 3M
KZ 5M
KZ 7M
SCW 1
DU-A 3C
carbidosilicon
Siliciumcarbid
Siliziumkarbid
CCRIS 7813
DU-A 1
DU-A 2
DU-A 3
DU-A 4
HSDB 681
Silicon carbide whiskers
SD-GP 6000
SD-GP 8000
UF 15
UNII-WXQ6E537EW
EINECS 206-991-8
SC 201
YE 5626
Silicon(IV) carbide
GC 10000
[SiC]
MFCD00049531
WXQ6E537EW
DTXSID5052751
CHEBI:29390
EC 206-991-8
(SiC)
Silicon carbide, beta-phase
Silicon Carbide Micron Powder
SILICON CARBIDE [SIC]
SC 9
UA 1
UA 2
UA 3
UA 4
Silicon carbide powder
Electroln
Carborundum, CP
Silicon carbide beta
Siliconcarbide1-3um
CRYSTOLON
DIASIC
ELECTROLON
IBIDEN
SIXCY
SUPERSIC
Silicon carbide Alpha
SHINANO RUNDUM
CRYSTOLON B
DENSIC GC
HALSIC RX
HEXOLOY SA
HEXOLOY SX
EKASIC D
SIKA III
Synthetic MOISSANITE
Silicon carbide 1-3um
Silicon Carbide Nanowire
HSC (CARBIDE)
silicon carbide whis-kers
CARBOGRAN UF 15
CARBOGRAN UF 45
B-HP (CARBIDE)
CARBOGRAN F 36
CARBOGRAN F 80
POLISHER C 80
CARBOGRAN F 180
CRYSTOLON F 240
CRYSTOLON F 320
DENSIC 60
DENSIC 80
DENSIC RC 31
FCP 13NLC
GMF 6S
UA 4 (CARBIDE)
ULTRAFINE (CARBIDE)
LONZA UF 05
Nano Silicon Carbide Powder
Silicon Carbide Fine Powder
T 1 (CARBIDE)
TOKAWHISKER S 400
AE 60 (CARBIDE)
beta-Silicon carbide 0.5um
CGW 3
DENSIC 120
DENSIC 180
DENSIC 220
F 20 (ABRASIVE)
GC 15 (CARBIDE)
UF 05 (CARBIDE)
UF 10 (CARBIDE)
DENSIC C 150
DENSIC C 600
Silicon Carbide Micronwhisker
A 20 (CARBIDE)
EKASIC TRIBO 2000
SILICON CARBIDE [MI]
C 700D DARK
C 800D DARK
F 120 (CARBIDE)
F 500 (CARBIDE)
NORTON 1000
P 240 (CARBIDE)
P 320 (CERAMIC)
P 400 (CERAMIC)
P 600 (CERAMIC)
Silicon carbide, -100 mesh
Silicon carbide, -325 mesh
GREEN DENSIC GC 120
GREEN DENSIC GC 180
GREEN DENSIC GC 240
GREEN DENSIC GC 280
NC 203 (CERAMIC)
NG 220 (CARBIDE)
GP 600 (ABRASIVE)
SILICON CARBIDE [HSDB]
SILICON CARBIDE [INCI]
FCP 15
GMF 15H2
GP-SFP 1.7
MSC 20
MSM 33
RA 1200 BLACK GRIT
RA 1200 GREEN GRIT
SCH 07
SCP 00
SCW 15
SIC 11
SSC-W 49
UFB 10
Silicon carbide (ACGIH:OSHA)
DTXCID4031350
F 1000 (CARBIDE)
GC 2000 (CARBIDE)
P 1200 (CERAMIC)
Silicon Carbide Submicron Powder
EKASIC TRIBO 2000-1
SCW 1-50M
BSC 059
GC 800S
NFO 860
100FT
AE 60
BF 12
GC 15
HF 30
NG 80
OY 15
UF 05
UF 10
GC 1000F
GC 4000F
CP 240
CP 400
GC 180
GC 240
GC 400
GC 600
GC 800
GP 600
NC 203
NG 220
C 1000F
GC 1000
GC 2000
GC 3000
GC 4000
GC 6000
GC 8000
SILICON CARBIDE (SI0.5C0.5)
Magnesium Sulfide (MgS) Sputtering Targets
Silicon carbide nanopowder (beta) (40 nm)
E 599P1500
F 120
P 240
P 320
P 400
P 600
Silicon carbide (beta), SiC, 97.5% Nano
37C150
F 1000
P 1200
Silicon carbide, 200-450 mesh particle size
Beta-Silicon Carbide SiC GRADE B-hp (H?gan?s)
Q412356
Beta-Silicon Carbide SiC GRADE BF 12 (H?gan?s)
Beta-Silicon Carbide SiC GRADE BF 17 (H?gan?s)
Silicon carbide, nanopowder, <100 nm particle size
E 299-400
E 299-600
Silicon carbide, -400 mesh particle size, >=97.5%
StarCeram? S, Silicon Carbide, (rtp), Grade CQ (Kyocera)
StarCeram? S, Silicon Carbide, (rtp), Grade HQ (Kyocera)
StarCeram? S, Silicon Carbide, (rtp), Grade RQ (Kyocera)
StarCeram? S, Silicon Carbide, (rtp), Grade SQ (Kyocera)
StarCeram? S UF, Silicon Carbide, SiC Grade UF-05 (Kyocera)
StarCeram? S UF, Silicon Carbide, SiC Grade UF-10 (Kyocera)
StarCeram? S UF, Silicon Carbide, SiC Grade UF-15 (Kyocera)
StarCeram? S UF, Silicon Carbide, SiC Grade UF-25 (Kyocera)
StarCeram? S, Silicon Carbide, (rtp), Grade HQ-F (Kyocera)
Silicon Carbide, F 100, green, main particle size 150-106 micron
Silicon Carbide, F 1000, green, main particle size 16-0.2 micron
Silicon Carbide, F 150, green, main particle siZe 106-63 micron
Silicon Carbide, F 280, green, main particle size 89-23 micron
Silicon Carbide, F 360, green, main particle size 61-12 micron
Silicon Carbide, F 40, green, main particle size 500-355 micron
Silicon carbide, F 400, green, main particle size 49-8 micron
Silicon Carbide, F 60, green, main particle size 425-180 micron
Silicon Carbide, F 600, green, main particle size 29-2 micron
Silicon Carbide, F 800, green, main particle size 22-1.3 micron
Silicon Carbide, F 1200, green, main particle size 11,4-0,2 micron
Silicon carbide, nanofiber, D <2.5 mum, L/D >= 20, 98% trace metals basis
206-991-8
Solubility of Methanidylidynesilanylium
Methanidylidynesilanylium, with its complex structure, presents intriguing characteristics concerning its solubility. Understanding the solubility of this compound is essential as it influences its application in various chemical processes.
Key Considerations:
As a rule of thumb, "like dissolves like" holds true for this compound. Therefore, looking at its molecular structure provides insight into appropriate solvents for effective dissolution. Experimentation is often required to identify the best solvent system for this unique species.
In conclusion, understanding the solubility characteristics of methanidylidynesilanylium is vital for its utilization in synthetic chemistry, making solvent selection and conducting solubility tests indispensable steps in practical applications.