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1

Al-Hilli, Safaa. ZnO nano-structures for biosensing applications: Molecular dynamic simulations. Nova Science Publishers, 2010.

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2

Martino, M. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2010.

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3

Martino, M. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2010.

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4

M, Martino, ed. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2009.

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5

Alias, Siti Salwa, and Ahmad Azmin Mohamad. Synthesis of Zinc Oxide by Sol–Gel Method for Photoelectrochemical Cells. Springer Singapore, 2014. http://dx.doi.org/10.1007/978-981-4560-77-1.

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6

ZnO bao mo zhi bei ji qi guang, dian xing neng yan jiu. Shanghai da xue chu ban she, 2010.

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7

Yang, Yi, and Sun Xiaowei. ZnO Nanostructures and Their Applications. Jenny Stanford Publishing, 2016.

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8

Yang, Yi, and Sun Xiaowei. ZnO Nanostructures and Their Applications. Jenny Stanford Publishing, 2016.

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9

ZnO Nanostructures and Their Applications. Taylor & Francis Group, 2011.

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10

Zinc Oxide Nanostructures: Synthesis and Characterization. MDPI, 2018. http://dx.doi.org/10.3390/books978-3-03897-303-4.

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11

Yan, Caihua. Electronic structure and optical properties of ZnO: Bulk and surface. 1994.

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12

Awasthi, Kamlendra. Nanostructured Zinc Oxide: Synthesis, Properties and Applications. Elsevier, 2021.

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13

Korotcenkov, Ghenadii, and Kamlendra Awasthi. Nanostructured Zinc Oxide: Synthesis, Properties and Applications. Elsevier, 2021.

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14

Alias, Siti Salwa, and Ahmad Azmin Mohamad. Synthesis of Zinc Oxide by Sol–Gel Method for Photoelectrochemical Cells. Springer, 2013.

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15

Springer. Synthesis of Zinc Oxide by Sol-Gel Method for Photoelectrochemical Cells. Springer London, Limited, 2013.

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16

house, book, and Amelia Prosperity. Synthesis of Nano Particles Using Thermal Treatment Method: Step by Step Method on How to Synthesis Zinc Oxide Nanoparticles. Independently Published, 2022.

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17

McGlynn, E., M. O. Henry, and J. P. Mosnier. ZnO wide-bandgap semiconductor nanostructures: Growth, characterization and applications. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.14.

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This article describes the growth, characterization and applications of zinc oxide (ZnO) wide-bandgap semiconductor nanostructures. It first introduces the reader to the basic physics and materials science of ZnO, with particular emphasis on the crystalline structure, electronic structure, optical properties and materials properties of ZnO wide-bandgap semiconductors. It then considers some of the commonly used growth methods for ZnO nanostructures, including vapor-phase transport, chemical vapor deposition, molecular beam epitaxy, pulsed-laser deposition, sputtering and chemical solution meth
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