Robert J Lipert, Ruth Shinar, Bikas Vaidya, Andrew D Pris, Marc D Porter, Guojun Liu, Ted D Grabau, John P Dilger
Index: Anal. Chem. 74(24) , 6383-91, (2002)
Full Text: HTML
The performance of quartz crystal oscillator-based volatile organic compound (VOC) sensors has been enhanced by using coatings made from poly(styrene-block-ethylene-co-butylene-block-styrene) block copolymers blended with resins and homopolymers. Enhanced performance is characterized by a wider operational temperature range (-10 to +50 degrees C) over which the sensors displayed, concurrently, an analyte sensitivity of >0.2 Hz/ppm toluene, minimal energy loss (resistance <120 ohms), and response times of <20 min (time required to reach 90% of full response). Atomic force microscopy images are consistent with a process in which the additive associates with the polystyrene portions of the microphase-separated block copolymer. This association reinforces the rigidity of the polystyrene network while allowing the rapid uptake of VOCs by the softer polyethylene/butylene phase.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
Polybutenes
CAS:9003-29-6 |
C12H17N5O2 |
Matrix-assisted laser desorption/ionization mass spectrometr...
2003-07-01 [Anal. Chem. 75(13) , 3092-100, (2003)] |
In vivo comparison of three different porous materials inten...
1998-05-01 [Br. J. Ophthalmol. 82(5) , 569-76, (1998)] |
New facile approach to novel water-soluble aliphatic poly(bu...
2005-01-01 [Biomacromolecules 6(6) , 3474-80, (2005)] |
Adhesion of Aeromonas hydrophila to water distribution syste...
1998-10-01 [J. Food Prot. 61(10) , 1321-9, (1998)] |
Proximate composition, mineral content and antinutritional f...
2014-01-01 [Macromol. Biosci. 5(6) , 526-38, (2005)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved