Science · 2001 · 296 citations · 26 references
EngineeringChemical AnalysisBiomedical EngineeringChemistryChemical ImageBioanalysisChemical ExposureAnalytical ChemistryNanosensorAnion SensingCrystal FormationChemical SensorMolecular ImagingBiophysicsChemical MeasurementRecognition-driven Anchoring TransitionsCrystallographyApplied PhysicsCompetitive BindingInterfacial StudyComplex InstrumentationChemical ProbeMedicineLiquid CrystalsDrug Analysis
The competitive binding of a molecule forming a liquid crystal and a targeted analyte to a common molecular receptor presented at a solid surface possessing nanometer-scale topography is used to trigger an easily visualized surface-driven change in the orientation of a micrometer-thick film of liquid crystal. Diffusion of the targeted analyte from atmosphere to surface-immobilized receptor across the micrometer-thick film of liquid crystal is fast (on the order of seconds), and the competitive interaction of the targeted analyte and liquid crystal with the receptor provides a high level of tolerance to nontargeted species (water, ethanol, acetone, and hexanes). Systems that provide parts-per-billion (by volume) sensitivity to either organoamine or organophosphorus compounds are demonstrated, and their use for imaging of spatial gradients in concentration is reported. This approach does not require complex instrumentation and could provide the basis of wearable personalized sensors for measurement of real-time and cumulative exposure to environmental agents.
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Translating Biomolecular Recognition into Nanomechanics
Jürgen Fritz, Marko Baller, H.P. Lang et al. · Science · 2000 · 1.6K citations
Ralph G. Nuzzo, Lawrence H. Dubois, David L. Allara · Journal of the American Chemical Society · 1990 · 1.6K citations
Chemistry of the metal chelate compounds
John H. Yoe · Journal of Chemical Education · 1953 · 1K citations
Surface Stress in the Self-Assembly of Alkanethiols on Gold
Rüdiger Berger, Emmanuel Delamarche, H.P. Lang et al. · Science · 1997 · 534 citations
Materials Science, Langmuir-type Adsorption Kinetics, Engineering +11