IP Library › Granted Patent US 10,976,252
Granted Patent B2
US 10,976,252 · App. 16/807,374 · Granted Apr 13, 2021

Equilibrium plasmonic mercury sensing apparatus and methods

Inventors: Jay James (Berkeley, CA); Jeffrey Scott Crosby (Richmond, CA)
Assignee: Picoyune, LLC
G01N21/554G01N33/0045
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Quick Facts
Patent No.
US 10,976,252
App. No.
16/807,374
Granted
Apr 13, 2021
Kind
B2
Abstract

Apparatus and methods are provided for quantitative detection of mercury vapor in gas samples using a film of nanoparticles. The localized surface plasmon resonance (LSPR) of an amalgam nanoparticle is sensitive to adsorbed mercury mass. The equilibrium mass of mercury on a gold nanoparticle is a function of the surrounding vapor concentration and the temperature of the gold. A device that introduces a temperature-controlled gold nanoparticle film to a controlled flow of sample gas responds predictably to a given mercury vapor concentration when optically probed in situ. Controlling the temperature of the film allows for control of adsorption and desorption rates. Equilibrium plasmonic mercury detection, described herein, removes the cycling necessary for many gold-based mercury analyses. Methods are given for the operation and analysis of the temperature-stabilized gold nanoparticle mercury sensor. The disclosed mercury-detection apparatus and methods find use in a variety of applications, including, for example, mercury detecting applications.

Claims (8)

1. A process for manufacturing a mercury-sensitive film comprising a plurality of gold-mercury amalgam nanoparticles, comprising:

(a) supporting a gold-nanoparticle film on a transparent substrate;

(b) maintaining the gold-nanoparticle film at a substantially constant selected operating temperature;

(c) while performing step (b):

(i) exposing the gold-nanoparticle film to mercury vapor in air while detecting for a first localized surface plasmon resonance (LSPR) signal from the film, and allowing the first signal to stabilize; then

(ii) exposing the gold-nanoparticle film to mercury-free air while detecting for a second LSPR signal from the film and allowing the second signal to stabilize;

whereby the nanoparticles of the film are preconditioned to substantially preclude irreversible mercury adsorption during use with a sample at the selected operating temperature.

2. A product made by the process of claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2020
From: JAMES, JAY; CROSBY, JEFFREY SCOTT
To: PICOYUNE, LLC
Reel/Frame 052068/0800 →
Continuity (3)
Division 16377124 · Apr 5, 2019
Provisional Application 62653555 · Apr 5, 2018
Related Publication 20200209157A1 · Jul 2, 2020