Academic literature on the topic 'Photo-electro-chemical sensing'

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Journal articles on the topic "Photo-electro-chemical sensing"

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Polo, Federico, Beatrice Polido, Mattia Reato, Giulia Moro, Neso Sojic, and Matteo Mauro. "(Invited) Heterobimetallic IrIII-MI (MI = Au, Cu) Complexes: A Novel and Bright Alternative As Electrochemiluminescence Probes for Sensing and Imaging." ECS Meeting Abstracts MA2025-01, no. 60 (2025): 2903. https://doi.org/10.1149/ma2025-01602903mtgabs.

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Bimetallic complexes are rapidly emerging as a valid and attractive class of emitters. In this presentation, we will describe a recent work concerning the yet unexplored electrochemiluminescence (ECL) properties of a series of heterobimetallic complexes of general structure IrIII-MI belonging to the class of ionic transition metal complexes (iTMCs). In the IrIII-MI series, the formally neutral cyclometalated iridium complex provides efficient photo- and electro-active properties to the molecular emitters. Whereas bulky MI(gold or copper) metalloligand increases structural rigidity and chemical
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Hu, Shu. "(Invited) Tuning Photocatalytic Activity with Energetic and Kinetic Asymmetry at Coating-Stabilized Particulate Semiconductors." ECS Meeting Abstracts MA2023-01, no. 37 (2023): 2186. http://dx.doi.org/10.1149/ma2023-01372186mtgabs.

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Semiconductor photocatalysts coevolve reductive and oxidative reactions at nanoscale proximity. The local charge separation and local coevolution have unique advantages: i) photocatalysts can operate in neutral pH water or water vapor instead of strong acid or base; ii) most semiconductors form a self-passivating layer at corroded surfaces to prevent corrosion propagation; and iii) nanoparticulate photoabsorbers or nanocrystalline films have achieved near-unity quantum efficiency, promising scale-up solar-to-chemical conversion. Despite the near-unity quantum efficiency achieved for SrTiO3 par
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Bleiji, Yorick, Mees Dieperink, Imme Schuringa, Hongyu Sun, and Esther Alarcón Lladó. "Influence of the Crystallographic Texture of ITO on the Electrodeposition of Silver Nanoparticles." ECS Meeting Abstracts MA2023-01, no. 46 (2023): 2491. http://dx.doi.org/10.1149/ma2023-01462491mtgabs.

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Metal nanoparticles exhibit physical and chemical properties that differ significantly from macroscopic metal phases. In particular, silver nanoparticles (NPs) had have extensive attention since it has a strong interaction with light due to their high quality localized surface plasmon resonances, which can be tuned all across the visible to the NIR regime. These strong and tuneable interaction of visible light with silver NPs have found many applications, in sensing, surface enhanced Raman spectroscopy, photo(electro)catalysis, and more. Polycrystalline indium tin oxide (ITO) films are highly
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Tao, Cheng-An, and Jian-Fang Wang. "Synthesis of Metal Organic Frameworks by Ball-Milling." Crystals 11, no. 1 (2020): 15. http://dx.doi.org/10.3390/cryst11010015.

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Metal-organic frameworks (MOFs) have been used in adsorption, separation, catalysis, sensing, photo/electro/magnetics, and biomedical fields because of their unique periodic pore structure and excellent properties and have become a hot research topic in recent years. Ball milling is a method of small pollution, short time-consumption, and large-scale synthesis of MOFs. In recent years, many important advances have been made. In this paper, the influencing factors of MOFs synthesized by grinding were reviewed systematically from four aspects: auxiliary additives, metal sources, organic linkers,
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Xia, Dong, Carmen Lee, Nicolas M. Charpentier, Yuemin Deng, Qingyu Yan, and Jean‐Christophe P. Gabriel. "Drivers and Pathways for the Recovery of Critical Metals from Waste‐Printed Circuit Boards." Advanced Science, June 5, 2024. http://dx.doi.org/10.1002/advs.202309635.

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AbstractThe ever‐increasing importance of critical metals (CMs) in modern society underscores their resource security and circularity. Waste‐printed circuit boards (WPCBs) are particularly attractive reservoirs of CMs due to their gamut CM embedding and ubiquitous presence. However, the recovery of most CMs is out of reach from current metal‐centric recycling industries, resulting in a flood loss of refined CMs. Here, 41 types of such spent CMs are identified. To deliver a higher level of CM sustainability, this work provides an insightful overview of paradigm‐shifting pathways for CM recovery
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Sayed, Mardia T. El, Ibrahim H. I. Habib, Nermien M. Sabry, et al. "Discovery of THICZs as Chemical Sensors: Synthesis, Spectrophotometric,Voltammetric and DFT Studies." International Journal of Sensors, Wireless Communications and Control 09 (July 10, 2019). http://dx.doi.org/10.2174/2210327909666190710101420.

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Absorption spectra of tetrahydro[3,2-b]indolo-carbazoles (THICZs) with various molecular size and alkyl tails have been recorded in various solvents in the range between 200 to 600 nm. The photo physical behaviour of dissolved THICZs depends on the nature of its environment. The solvatochromic behaviours of THICZs and solvent solute interactions can be analysed by means of linear solvation energy relationships concept proposed by Kamlet and Taft. Compound 4 show excellent properties for sensing small molecules. The electrochemical behaviour of some THICZs was investigated at carbon paste elect
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Dissertations / Theses on the topic "Photo-electro-chemical sensing"

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Rafique, Nasir. "Engineered functional films for photo-electro-chemical sensing of environmental matters." Thesis, Edith Cowan University, Research Online, Perth, Western Australia, 2023. https://ro.ecu.edu.au/theses/2672.

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The identification and detection of harmful substances in various matrices has gained significant attention due to the negative impacts they have on human health and aquatic life. To address this issue, various analytical techniques have been developed and utilized by monitoring agencies and regulatory bodies. However, many of these techniques are complex, costly and require specialized equipment and trained personnel to operate. Furthermore, the large and cumbersome nature of these techniques makes it difficult to conduct measurements in the field. Additionally, some of these techniques may n
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Book chapters on the topic "Photo-electro-chemical sensing"

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Dutta, Amit Kumar. "Metal Chalcogenides-Based Multifunctional Nanomaterials for Solar-Light-Driven Photo-Catalysis and Electro-Chemical Sensing." In Innovative Multifunctional Nanomaterial for Photocatalysis, Sensing, and Imaging. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-8743-3.ch001.

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Development of innovative nanomaterials for multifunctional application in photo-catalysis, electro-chemical sensing etc. are gaining extraordinary importance worldwide. In this sense, several metal chalcogenides nano-materials, such as FeS, CdS, ZnS, Fe3O4 etc., nano-materials and their composite have been synthesized and established as effective heterogenous recyclable catalyst for conducting several photochemical and electrochemical reactions. When the nano-materials have the ability to absorb solar light energy, the performance for photo-catalytic reactions has been increased much more. In
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