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Zno Quantum Dots Sensitized Znsno3 for Highly Formaldehyde Sensing at a Low Temperature

https://doi.org/10.2139/ssrn.4577218
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23/23 checkable references clean · checked 2026-09-09

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

16 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 23 checked references that resolve
resolves10.1016/j.sna.2022.113578
Nanostructured metal oxide semiconductor-based gas sensors: A comprehensive review
resolves10.1016/j.snb.2019.03.012
Ultrathin SnO2 nanosheets with dominant high-energy {001} facets for low temperature formaldehyde gas sensor
resolves10.1016/j.snb.2017.08.054
Oxygen vacancies and grain boundaries potential barriers modulation facilitated formaldehyde gas sensing performances for In2O3 hierarchical architectures
resolves10.1016/j.jallcom.2018.10.122
Constructing chinky zinc oxide hierarchical hexahedrons for highly sensitive formaldehyde gas detection
resolves10.1108/SR-04-2021-0136
Formaldehyde gas sensing using metal oxide semiconductor: a brief review
resolves10.1016/j.jallcom.2017.12.168
A facile one-step hydrothermal synthesis of NiO/ZnO heterojunction microflowers for the enhanced formaldehyde sensing properties
resolves10.1002/adma.202002075
Rational Design of Semiconductor‐Based Chemiresistors and their Libraries for Next‐Generation Artificial Olfaction
resolves10.1016/j.snb.2015.08.027
Spinel ferrite oxide semiconductor gas sensors
resolves10.1016/j.snb.2009.07.021
Synthesis and gas-sensing properties of ZnSnO3 cubic nanocages and nanoskeletons
resolves10.1021/acsami.7b03112
Hollow ZnSnO<sub>3</sub> Cubes with Controllable Shells Enabling Highly Efficient Chemical Sensing Detection of Formaldehyde Vapors
resolves10.1016/j.jcis.2021.09.167
Controlled preparation and gas sensitive properties of two-dimensional and cubic structure ZnSnO3
resolves10.1021/jp104733e
Size-Controlled Synthesis of ZnSnO<sub>3</sub> Cubic Crystallites at Low Temperatures and Their HCHO-Sensing Properties
resolves10.1016/j.snb.2017.10.015
Hybridization of ZnSnO3 and rGO for improvement of formaldehyde sensing properties
resolves10.1016/j.snb.2017.10.176
Construction of NiO@ZnSnO3 hierarchical microspheres decorated with NiO nanosheets for formaldehyde sensing
resolves10.1007/s10853-017-1588-2
Facile synthesis of Pd-doped ZnSnO3 hierarchical microspheres for enhancing sensing properties of formaldehyde
resolves10.1016/j.apsusc.2022.156215
Ag nanoparticles decorated ZnSnO3 hollow cubes for enhanced formaldehyde sensing performance at low temperature
resolves10.3390/s22124369
Resistive-Based Gas Sensors Using Quantum Dots: A Review
resolves10.1016/j.snb.2023.133833
Fabrication of a ppb-level NO2 gas sensor by sensitizing nanobundles assembled by In2O3 nanotubes with TiO2 quantum dots
resolves10.1021/acsanm.2c01819
SnO<sub>2</sub> Quantum Dots-Functionalized MoO<sub>3</sub> Nanobelts for High-Selectivity Ethylene Sensing
resolves10.1039/C8NR02498G
Porous Co <sub>3</sub> O <sub>4</sub> /SnO <sub>2</sub> quantum dot (QD) heterostructures with abundant oxygen vacancies and Co <sup>2+</sup> ions for highly efficient gas sensing and oxygen evolution reaction
resolves10.1016/j.snb.2012.05.036
Size-controlled synthesis of porous ZnSnO3 cubes and their gas-sensing and photocatalysis properties
resolves10.1002/smll.201400371
Selective Formation of Carbon‐Coated, Metastable Amorphous ZnSnO<sub>3</sub> Nanocubes Containing Mesopores for Use as High‐Capacity Lithium‐Ion Battery
resolves10.1016/j.snb.2016.07.051
Formaldehyde detection: SnO2 microspheres for formaldehyde gas sensor with high sensitivity, fast response/recovery and good selectivity
The 16 references without a DOI — listed, not checked
no DOI — not checkedref1
no DOI — not checkedDesign and optimization strategies of metal oxide semiconductor nanostructures for advanced formaldehyde sensors
no DOI — not checked/ZnO S-scheme heterojunction nanocomposite hollow microtubes with highly sensitive response to formaldehyde
no DOI — not checkedPerovskite materials for sensing applications: Recent advances and challenges
no DOI — not checkedref12
no DOI — not checkedref15
no DOI — not checkedref19
no DOI — not checkedOne-step synthesis of ZnWO 4 /ZnSnO 3 composite and the enhanced gas sensing performance to formaldehyde
no DOI — not checkedQuantum dots: Perspectives in next-generation chemical gas sensors"-A review
no DOI — not checkedEnhanced xylene detection performance of colloidal quantum dots modified tungsten oxide composites
no DOI — not checkedDual role of the reactant MOH (M=Li, Na or K) in the growth of ZnO quantum dots under a sol-gel process: promoter and inhibitor
no DOI — not checkedref33
no DOI — not checkedFabrication of ZnO quantum dots@SnO 2 hollow nanospheres hybrid hierarchical structures for effectively detecting formaldehyde
no DOI — not checkedDecoration of laser-ablated ZnO nanoparticles over sputtered deposited SnO 2 thin film based formaldehyde sensor
no DOI — not checkedA formaldehyde gas sensor with improved gas response and sub-ppm level detection limit based on NiO/NiFe 2 O 4 composite nanotetrahedrons
no DOI — not checkedPerovskite-structured LaCoO 3 modified ZnO gas sensor and investigation on its gas sensing mechanism by first principle
What this badge says. CiteStamped means the CHECKABLE references of this work were clean at the dated check: each resolved to a known work in a public registry, and none carried a retraction notice at that time. It says nothing about the quality, findings, or importance of the work itself, and nothing about references deposited without a DOI.

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