Artikel dengan mandat akses publik - Charles HenryPelajari lebih lanjut
Tidak tersedia di mana pun: 28
Microfluidic paper-based analytical devices: from design to applications
E Noviana, T Ozer, CS Carrell, JS Link, C McMahon, I Jang, CS Henry
Chemical reviews 121 (19), 11835-11885, 2021
Mandat: US National Science Foundation, US National Institutes of Health
Microfluidic paper-based analytical device for particulate metals
MM Mentele, J Cunningham, K Koehler, J Volckens, CS Henry
Analytical chemistry 84 (10), 4474-4480, 2012
Mandat: US National Institutes of Health
Sensitive electrochemical sensor using a graphene–polyaniline nanocomposite for simultaneous detection of Zn (II), Cd (II), and Pb (II)
N Ruecha, N Rodthongkum, DM Cate, J Volckens, O Chailapakul, ...
Analytica chimica acta 874, 40-48, 2015
Mandat: US National Institutes of Health
Simple silver nanoparticle colorimetric sensing for copper by paper-based devices
N Ratnarathorn, O Chailapakul, CS Henry, W Dungchai
Talanta 99, 552-557, 2012
Mandat: US National Institutes of Health
Highly Sensitive Detection of Salmonella typhimurium Using a Colorimetric Paper-Based Analytical Device Coupled with Immunomagnetic Separation
M Srisa-Art, KE Boehle, BJ Geiss, CS Henry
Analytical chemistry 90 (1), 1035-1043, 2018
Mandat: US Department of Agriculture
Colorimetric and electrochemical bacteria detection using printed paper-and transparency-based analytic devices
JA Adkins, K Boehle, C Friend, B Chamberlain, B Bisha, CS Henry
Analytical chemistry 89 (6), 3613-3621, 2017
Mandat: US National Institutes of Health, US Department of Agriculture
NFC-enabling smartphone-based portable amperometric immunosensor for hepatitis B virus detection
P Teengam, W Siangproh, S Tontisirin, A Jiraseree-amornkun, ...
Sensors and Actuators B: Chemical 326, 128825, 2021
Mandat: US National Science Foundation
Development of a quasi-steady flow electrochemical paper-based analytical device
JA Adkins, E Noviana, CS Henry
Analytical chemistry 88 (21), 10639-10647, 2016
Mandat: US National Institutes of Health
Rapid bacteria detection at low concentrations using sequential immunomagnetic separation and paper-based isotachophoresis
F Schaumburg, CS Carrell, CS Henry
Analytical chemistry 91 (15), 9623-9630, 2019
Mandat: US Department of Agriculture, Government of Argentina
Highly selective simultaneous determination of Cu (II), Co (II), Ni (II), Hg (II), and Mn (II) in water samples using microfluidic paper-based analytical devices
P Kamnoet, W Aeungmaitrepirom, RF Menger, CS Henry
Analyst 146 (7), 2229-2239, 2021
Mandat: US National Institutes of Health
Rapid analysis in continuous-flow electrochemical paper-based analytical devices
LA Pradela-Filho, E Noviana, DAG Araújo, RM Takeuchi, AL Santos, ...
ACS sensors 5 (1), 274-281, 2020
Mandat: US National Science Foundation
Pump-free microfluidic rapid mixer combined with a paper-based channel
I Jang, DB Carrao, RF Menger, AR Moraes de Oliveira, CS Henry
ACS sensors 5 (7), 2230-2238, 2020
Mandat: US National Institutes of Health
Janus electrochemical paper-based analytical devices for metals detection in aerosol samples
J Mettakoonpitak, J Volckens, CS Henry
Analytical Chemistry 92 (1), 1439-1446, 2019
Mandat: US National Institutes of Health
Electrode array detector for microchip capillary electrophoresis
RE Holcomb, JR Kraly, CS Henry
Analyst 134 (3), 486-492, 2009
Mandat: US National Institutes of Health
Recent advances in sensor arrays for the simultaneous electrochemical detection of multiple analytes
T Ozer, CS Henry
Journal of The Electrochemical Society 168 (5), 057507, 2021
Mandat: US National Science Foundation
Dual sample preconcentration for simultaneous quantification of metal ions using electrochemical and colorimetric assays
B Ninwong, N Ratnarathorn, CS Henry, CR Mace, W Dungchai
Acs Sensors 5 (12), 3999-4008, 2020
Mandat: US National Institutes of Health
Manganese detection using stencil‐printed carbon ink electrodes on transparency film
KE Berg, JA Adkins, SE Boyle, CS Henry
Electroanalysis 28 (4), 679-684, 2016
Mandat: US National Science Foundation
Capillary flow-driven microfluidics combined with a paper device for fast user-friendly detection of heavy metals in water
P Aryal, E Brack, T Alexander, CS Henry
Analytical Chemistry 95 (13), 5820-5827, 2023
Mandat: US Department of Defense
Characterization of novel microelectrode geometries for detection of neurotransmitters
W Pettine, M Jibson, T Chen, S Tobet, P Nikkel, CS Henry
IEEE sensors journal 12 (5), 1187-1192, 2011
Mandat: US National Institutes of Health
Microfluidic-based ion-selective thermoplastic electrode array for point-of-care detection of potassium and sodium ions
T Ozer, CS Henry
Microchimica Acta 189 (4), 152, 2022
Mandat: US National Science Foundation
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