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Snapshot Broadband Coherent Diffraction Ultrafast Imaging
Conflict of Interest The authors declare no conflict of interest. Supporting Information Filename Description lpor70149-sup-0001-SuppMat.docx1.9 MB Supporting Information lpor70149-sup-0002-VideoS1.avi1 MB Supplemental Video 1 lpor70149-sup-0003-VideoS2.avi1.2 MB Supplemental Video 2 lpor70149-sup-0004-VideoS3.avi1.4 MB Supplemental Video 3 lpor70149-sup-0005-VideoS4.avi2.7 MB Supplemental Video 4 References 1, , , , , Nat. Photonics 2018, 12, 228. 2, , Rep. Prog. Phys. 2020, 83, 034401.
Immobilization of Cadmium by Fulvic Acid-Modified Palygorskite and Plant and Soil Metabolism Responses
All articles published by MDPI are made immediately available worldwide under an open access license. No special permission is required to reuse all or part of the article published by MDPI, including figures and tables. For articles published under an open access Creative Common CC BY license, any part of the article may be reused without permission provided that the original article is clearly cited. For more information, please refer to https://www.mdpi.com/openaccess.
Ultra-sensitive nitrate-ion detection via transconductance-enhanced graphene ion-sensitive field-effect transistors - Microsystems & Nanoengineering
Abstract Current potentiometric sensing methods are limited to detecting nitrate at parts-per-billion (sub-micromolar) concentrations, and there are no existing potentiometric chemical sensors with ultralow detection limits below the parts-per-trillion (picomolar) level. To address these challenges, we integrate interdigital graphene ion-sensitive field-effect transistors (ISFETs) with a nitrate ion-sensitive membrane (ISM).
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