SnO2 quantum dots (QDs): Synthesis and potential applications in energy storage and environmental remediation
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference198 articles.
1. High capacity and cyclability of SnO2–In2O3/graphene nanocomposites as the anode of lithium-ion battery;Sun;Sci. Adv. Mater.,2016
2. Synthesis of SnO 2/MoS 2 composites with different component ratios and their applications as lithium ion battery anodes;Chen;J. Mater. Chem. A,2014
3. Antimony-doped tin dioxide gas sensors exhibiting high stability in the sensitivity to humidity changes;Suematsu;ACS Sens.,2016
4. Nanoparticle cluster gas sensor: pt activated SnO 2 nanoparticles for NH 3 detection with ultrahigh sensitivity;Liu;Nanoscale,2015
5. High sensitivity and recoverable SnO2-based sensor promoted with Fe2O3 and ZnO for sub-ppm H2S detection;Hwang;J. Nanoelectron. Optoelectron.,2017
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1. Synergistic integration of MoS2 nanopetals and SnO2 quantum dots for enhanced supercapacitor performance;Journal of Electroanalytical Chemistry;2024-10
2. Remarkable photodegradation breakdown cost, antimicrobial activity, photocatalytic efficiency, and recycling of SnO2 quantum dots throughout industrial hazardous pollutants treatment;Ceramics International;2024-10
3. Strategies, perspectives, and challenges of improving the initial coulombic efficiency and tap density of Sn-based anode materials for lithium-ion batteries;Chemical Engineering Journal;2024-09
4. Stepwise synthesis of magnetic mesoporous silica nanoparticles decorated with SnO2 quantum dots as an efficient, recyclable, and green nanocatalyst for the synthesis of benzo[a]pyrano[3,2‐c]phenazine derivatives;Applied Organometallic Chemistry;2024-07-23
5. Sustainable green synthesis of SnO2 quantum dots: A stable, phase-pure and highly efficient photocatalyst for degradation of toxic dyes;Materials Today Sustainability;2024-06
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