Advances in Materials Physics and Chemistry

Advances in Materials Physics and Chemistry

ISSN Print: 2162-531X
ISSN Online: 2162-5328
www.scirp.org/journal/ampc
E-mail: ampc@scirp.org
"A New Simple Route to ZnS Quantized Particles with Tunable Size and Shape, and Size/Shape-Dependent Optical Properties"
written by Pengfei Hu, Yali Cao, Yanyan Lou, Bo Lu, Min Shao, Jiansen Ni, Meng Cao,
published by Advances in Materials Physics and Chemistry, Vol.3 No.1, 2013
has been cited by the following article(s):
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[3] pBiomolecule assisted morphology-controllable synthesis of Zinc Sulphide nanomaterials for efficient photocatalytic activity under solar irradiation
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[4] Microwave Synthesis and Characterisation of Zinc Sulfide Nanomaterials for Photocatalytic and Anti-Bacterial Applications
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[5] Effect of morphology on optical and efficiently enhanced electrical properties of W-ZnS for UV sensor applications
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[6] Photoluminescence quenching in ligand free CdS nanocrystals due to silver doping along with two high energy surface states emission
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[7] Ligand mediated excited state carrier relaxation dynamics of Cd 1− x Zn x Se 1− y S y NCs derived from bile salts
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[8] Carolina F. Cerqueira, Bartolomeu C. Viana b, c, Cleanio da Luz-Lima b, Nestor Perea-Lopez c, Mauricio Terrones c, Eduardo HL Falcão d, Anderson SL …
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[9] (Ga, In) P nanowires grown without intentional catalyst
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[10] Controllable Synthesis and Characterization of CdS Quantum Dots by a Microemulsion-mediated Hydrothermal Method
Journal of Luminescence, 2015
[11] Carolina F. Cerqueira, Bartolomeu C. Viana b, c, Cleanio da Luz-Lima b, Nestor Perea-Lopez c, Mauricio Terrones c, Eduardo HL Falcão d, Anderson SL Gomes e
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[12] Single source-precursor route for the one-pot synthesis of highly luminescent CdS QDs for ultra-sensitive and selective photoluminescence sensor for Co2+ and Ni2+ ions
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[13] A single source-precursor route for the one-pot synthesis of highly luminescent CdS quantum dots as ultra-sensitive and selective photoluminescence sensor for Co 2 …
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[14] Structural and optical properties of zns nanoparticles synthesized by microwave irradiation method
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