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Milestone Scientific to Present at Microcap Rodeo s Fall Harvest - Best Ideas from the Buy-Side on Wednesday, October 6, 2021

Milestone Scientific to Present at Microcap Rodeo s Fall Harvest - Best Ideas from the Buy-Side on Wednesday, October 6, 2021
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Milestone Scientific to Present at Microcap Rodeo s Fall Harvest - Best Ideas from the Buy-Side on Wednesday, October 6, 2021

Milestone Scientific to Present at Microcap Rodeo s Fall Harvest - Best Ideas from the Buy-Side on Wednesday, October 6, 2021
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Pressure Sensor Market Value Anticipated To Reach US$ 24 5 Billion By 2027: Acumen Research and Consulting

Acumen Research and Consulting, a global provider of market research studies, in a recently published report titled “Pressure Sensor Market– Global Industry Analysis, Market Size, Opportunities and Forecast, 2020-2027”LOS ANGELES, May 19, 2021 (GLOBE NEWSWIRE) The Global Pressure Sensor Market is expected to grow at a CAGR of around 8.8% from 2020 to 2027 and reach the market value of over US$ 24.5 Bn by 2027. A pressure sensor is a device used to sense pressure and convert it into an electric signal. These pressure sensors can alternatively be called pressure transmitters, pressure transducers, pressure indicators, pressure senders, piezometers, and manometers, among others. These are available in various designs, technology, performance, application suitability, and cost. The global pressure sensor market is segmented on the basis of product type, function, technology, application, end-user industry, and geography. On the basis of product type, the market is di

Piezoresistive and Electrical Properties of a Catecholic Amino Acid-Po by Hao Zhang, Qiao Yan et al

Abstract We have developed a functional hydrogel combining the advantages of single-walled carbon nanotube (SWCNT) hydrogels and 3,4-dihydroxy-l-phenylalanine (l-DOPA) that would be expected to lead to a material with elevated piezoresistive ability. SWCNT hydrogel precursors were thus embedded into the catecholic amino acid 3,4-dihydroxy-l-phenylalanine-polyacrylamide (l-DOPA-PAM) hydrogel to form a l-DOPA-PAM-SWCNT hydrogel hybrid network. This hybrid network as formed was soft but became a hard gel at room temperature. An advantage of this material design is the prevention of overoxidation of l-DOPA to maintain enough free catechol groups to endow the desired properties. Several characterization techniques, including optical microscopy, field-emission scanning electron microscopy, Raman spectroscopy, and dynamic mechanical analysis, were utilized to characterize the l-DOPA-PAM-SWCNT hydrogel hybrid network. The negative piezoresistive effect and electrical properties of the l-DOP

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