366870
Indium(III) phosphide
pieces, 3-20 mesh, 99.998% trace metals basis
Synonym(s):
Indium monophosphide, Indium phosphide
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About This Item
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Quality Level
Assay
99.998% trace metals basis
form
pieces
reaction suitability
reagent type: catalyst
core: indium
particle size
3-20 mesh
SMILES string
P#[In]
InChI
1S/In.P
InChI key
GPXJNWSHGFTCBW-UHFFFAOYSA-N
Signal Word
Danger
Hazard Statements
Precautionary Statements
Hazard Classifications
Carc. 1B - Repr. 2 - STOT RE 1
Storage Class Code
6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
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Optics express, 20(27), 28538-28543 (2012-12-25)
We demonstrate the first integrated transmitter for serial 100 Gb/s NRZ-OOK modulation in datacom and telecom applications. The transmitter relies on the use of an electro-optic polymer modulator and the hybrid integration of an InP laser diode and InP-DHBT electronics
Optics express, 20(9), 9363-9370 (2012-04-27)
We report on the modulation characteristics of indium phosphide (InP) based microdisks heterogeneously integrated on a silicon-on-insulator (SOI) waveguide. We present static extinction ratios and dynamic operation up to 10 Gb/s. Operation with a bit-error rate below 1 × 10(-9)
Optics express, 20(27), 28734-28741 (2012-12-25)
A strictly non-blocking 8 × 8 switch for high-speed WDM optical interconnection is realized on InP by using the phased-array scheme for the first time. The matrix switch architecture consists of over 200 functional devices such as star couplers, phase-shifters
Biosensors & bioelectronics, 36(1), 62-68 (2012-04-28)
The development of highly-sensitive and label-free operating semiconductor-based, biomaterial detecting sensors has important applications in areas such as environmental science, biomedical research and medical diagnostics. In the present study, we developed an Indium Phosphide (InP) semiconductor-based resistive biosensor using the
Nanotechnology, 23(27), 275103-275103 (2012-06-20)
Direct comparisons of different types of nanoparticles for drug delivery have seldom been performed. In this study we compare the physical properties and cellular activity of doxorubicin (Dox) conjugates to gold nanoparticles (Au) and InP quantum dots of comparable diameter.
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