Matches in SemOpenAlex for { <https://semopenalex.org/work/W4283826218> ?p ?o ?g. }
- W4283826218 endingPage "2312" @default.
- W4283826218 startingPage "2312" @default.
- W4283826218 abstract "In this study, highly-sensitive piezoresistive strain sensors based on gold nanoparticle thin films deposited on a stretchable PDMS substrate by centrifugation were developed to measure arterial pulse waveform. By controlling carbon chain length of surfactants, pH value and particle density of the colloidal solutions, the gauge factors of nanoparticle thin film sensors can be optimized up to 677 in tensile mode and 338 in compressive mode, and the pressure sensitivity up to 350. Low pH and thin nanoparticle films produce positive influences to superior gauge factors. It has been demonstrated that nanoparticle thin film sensors on PDMS substrates were successfully applied to sense arterial pulses in different body positions, including wrist, elbow crease, neck, and chest." @default.
- W4283826218 created "2022-07-07" @default.
- W4283826218 creator A5001202439 @default.
- W4283826218 creator A5001412969 @default.
- W4283826218 creator A5013400780 @default.
- W4283826218 creator A5025988721 @default.
- W4283826218 creator A5035122310 @default.
- W4283826218 creator A5049624892 @default.
- W4283826218 creator A5062693969 @default.
- W4283826218 date "2022-07-05" @default.
- W4283826218 modified "2023-09-30" @default.
- W4283826218 title "Optimization of Piezoresistive Strain Sensors Based on Gold Nanoparticle Deposits on PDMS Substrates for Highly Sensitive Human Pulse Sensing" @default.
- W4283826218 cites W1965675336 @default.
- W4283826218 cites W1967704732 @default.
- W4283826218 cites W1969943621 @default.
- W4283826218 cites W1982560226 @default.
- W4283826218 cites W1989172022 @default.
- W4283826218 cites W1989786765 @default.
- W4283826218 cites W1992211560 @default.
- W4283826218 cites W1994853314 @default.
- W4283826218 cites W1996543868 @default.
- W4283826218 cites W2002064562 @default.
- W4283826218 cites W2004795222 @default.
- W4283826218 cites W2012793791 @default.
- W4283826218 cites W2026926832 @default.
- W4283826218 cites W2030260193 @default.
- W4283826218 cites W2032755137 @default.
- W4283826218 cites W2045449801 @default.
- W4283826218 cites W2062520173 @default.
- W4283826218 cites W2067479625 @default.
- W4283826218 cites W2071273302 @default.
- W4283826218 cites W2078274548 @default.
- W4283826218 cites W2078529521 @default.
- W4283826218 cites W2078835847 @default.
- W4283826218 cites W2317980776 @default.
- W4283826218 cites W2330922203 @default.
- W4283826218 cites W2331796274 @default.
- W4283826218 cites W2334455906 @default.
- W4283826218 cites W2334512323 @default.
- W4283826218 cites W2419007444 @default.
- W4283826218 cites W2488793389 @default.
- W4283826218 cites W2887967827 @default.
- W4283826218 cites W2945501847 @default.
- W4283826218 cites W3125348697 @default.
- W4283826218 cites W4283261660 @default.
- W4283826218 doi "https://doi.org/10.3390/nano12132312" @default.
- W4283826218 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35808151" @default.
- W4283826218 hasPublicationYear "2022" @default.
- W4283826218 type Work @default.
- W4283826218 citedByCount "1" @default.
- W4283826218 countsByYear W42838262182023 @default.
- W4283826218 crossrefType "journal-article" @default.
- W4283826218 hasAuthorship W4283826218A5001202439 @default.
- W4283826218 hasAuthorship W4283826218A5001412969 @default.
- W4283826218 hasAuthorship W4283826218A5013400780 @default.
- W4283826218 hasAuthorship W4283826218A5025988721 @default.
- W4283826218 hasAuthorship W4283826218A5035122310 @default.
- W4283826218 hasAuthorship W4283826218A5049624892 @default.
- W4283826218 hasAuthorship W4283826218A5062693969 @default.
- W4283826218 hasBestOaLocation W42838262181 @default.
- W4283826218 hasConcept C104819515 @default.
- W4283826218 hasConcept C111368507 @default.
- W4283826218 hasConcept C121332964 @default.
- W4283826218 hasConcept C127313418 @default.
- W4283826218 hasConcept C136525101 @default.
- W4283826218 hasConcept C142724271 @default.
- W4283826218 hasConcept C155672457 @default.
- W4283826218 hasConcept C159985019 @default.
- W4283826218 hasConcept C171250308 @default.
- W4283826218 hasConcept C19067145 @default.
- W4283826218 hasConcept C192562407 @default.
- W4283826218 hasConcept C198490522 @default.
- W4283826218 hasConcept C204787440 @default.
- W4283826218 hasConcept C2777289219 @default.
- W4283826218 hasConcept C2777403436 @default.
- W4283826218 hasConcept C2778517922 @default.
- W4283826218 hasConcept C41325743 @default.
- W4283826218 hasConcept C49040817 @default.
- W4283826218 hasConcept C513720949 @default.
- W4283826218 hasConcept C60584519 @default.
- W4283826218 hasConcept C71924100 @default.
- W4283826218 hasConcept C97355855 @default.
- W4283826218 hasConceptScore W4283826218C104819515 @default.
- W4283826218 hasConceptScore W4283826218C111368507 @default.
- W4283826218 hasConceptScore W4283826218C121332964 @default.
- W4283826218 hasConceptScore W4283826218C127313418 @default.
- W4283826218 hasConceptScore W4283826218C136525101 @default.
- W4283826218 hasConceptScore W4283826218C142724271 @default.
- W4283826218 hasConceptScore W4283826218C155672457 @default.
- W4283826218 hasConceptScore W4283826218C159985019 @default.
- W4283826218 hasConceptScore W4283826218C171250308 @default.
- W4283826218 hasConceptScore W4283826218C19067145 @default.
- W4283826218 hasConceptScore W4283826218C192562407 @default.
- W4283826218 hasConceptScore W4283826218C198490522 @default.
- W4283826218 hasConceptScore W4283826218C204787440 @default.
- W4283826218 hasConceptScore W4283826218C2777289219 @default.
- W4283826218 hasConceptScore W4283826218C2777403436 @default.
- W4283826218 hasConceptScore W4283826218C2778517922 @default.