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Books on the topic 'Magnetic nanocrystals'

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1

Iwasaki, Tomohiro, and Tomohiro Iwasaki. Organic solvent-free synthesis of magnetic nanocrystals with controlled particle sizes. Hauppauge, N.Y: Nova Science Publishers, 2010.

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2

Iwasaki, Tomohiro. Organic solvent-free synthesis of magnetic nanocrystals with controlled particle sizes. Hauppauge, N.Y: Nova Science Publishers, 2010.

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3

Zbroszczyk, Józef. Amorficzne i nanokrystaliczne stopy żelaza. Częstochowa: Wydawn. Politechniki Częstochowskiej, 2007.

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4

Pawlik, Piotr. Rola składu chemicznego i procesu wytwarzania w kształtowaniu właściwości magnetycznych masywnych amorficznych i nanokrystalicznych stopów żelaza. Częstochowa: Wydawn. Wydz. Inżynierii Procesowej, Materiałowej i Fizyki Stosowanej Politechniki Częstochowskiej, 2011.

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5

1962-, Zhukova Valentina, ed. Magnetic properties and applications of ferromagnetic microwires with amorpheous and nanocrystalline structure. Hauppauge, NY: Nova Science Publishers, 2009.

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6

van Schooten, Kipp. Optically Active Charge Traps and Chemical Defects in Semiconducting Nanocrystals Probed by Pulsed Optically Detected Magnetic Resonance. Heidelberg: Springer International Publishing, 2013. http://dx.doi.org/10.1007/978-3-319-00590-4.

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7

B, Cantor, ed. Novel nanocrystalline alloys and magnetic nanomaterials: An Oxford-Kobe materials text. Bristol: Institute of Physics Pub., 2005.

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8

1945-, Švec Petr, Idzikowski Bogdan, Miglierini Marcel, and North Atlantic Treaty Organization. Scientific Affairs Division., eds. Properties and applications of nanocrystalline alloys from amorphous precursors. Dordrecht: Kluwer Academic Publishers, 2005.

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9

Dantas, Noelio Oliveira. Diluted Magnetic Semiconductor Nanocrystals in Glass Matrix. INTECH Open Access Publisher, 2010.

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10

K, Rajendran, and Veeramanikandasamy T. Structural, Optical, Electrical and Magnetic Properties of Synthesized Manganese Sulfide Nanocrystals: A Study on the Influence of Process Parameters on Synthesis of MnS Nanocrystals. Independently Published, 2019.

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11

Schooten, Kipp van. Optically Active Charge Traps and Chemical Defects in Semiconducting Nanocrystals Probed by Pulsed Optically Detected Magnetic Resonance. Springer London, Limited, 2013.

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12

Schooten, Kipp van. Optically Active Charge Traps and Chemical Defects in Semiconducting Nanocrystals Probed by Pulsed Optically Detected Magnetic Resonance. Springer International Publishing AG, 2015.

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13

Glezer, A. M. Amorphous-Nanocrystalline Alloys. Taylor & Francis Group, 2017.

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14

Glezer, A. M., and N. A. Shurygina. Amorphous-Nanocrystalline Alloys. Taylor & Francis Group, 2020.

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15

Glezer, A. M. Amorphous-Nanocrystalline Alloys. Taylor & Francis Group, 2017.

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16

Glezer, A. M. Amorphous-Nanocrystalline Alloys. Taylor & Francis Group, 2017.

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17

(Editor), Bogdan Idzikowski, Peter Svec (Editor), and Marcel Miglierini (Editor), eds. Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors. Springer, 2005.

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18

Pennycook, S. J., M. Varela, M. F. Chisholm, A. Y. Borisevich, A. R. Lupini, K. van Benthem, M. P. Oxley, et al. Scanning transmission electron microscopy of nanostructures. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.6.

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Abstract:
This article investigates nanostructures by means of scanning transmission electron microscopy. The electron microscope is uniquely suited to the study of individual nanostructures, allowing differentiation of different structures and properties that is difficult or impossible to do with techniques that provide a spatial average. The present generation of aberration correctors, which correct all aberrations up to third order, makes it possible to obtain sufficient sensitivity to image and spectroscopically analyze single atoms. This article begins with a brief overview of the correction of lens aberration in electron microscopy, followed by several examples of insights into nanomaterials and the atomic origins of their functionality. In particular, it considers semiconductor nanocrystals, semiconductor quantum wires, and nanocatalysts. It also discusses magnetism in gold and silver nanoclusters as well as charge ordering in manganites.
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