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1

International Conference on Metalorganic Vapor Phase Epitaxy (4th 1988 Hakone, Japan). Metalorganic vapor phase epitaxy 1988: Proceedings of the Fourth International Conference on Metalorganic Vapor Phase Epitaxy, Hakone, Japan, 16-20 May 1988. North-Holland, 1988.

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International Conference on Metalorganic Vapor Phase Epitaxy (8th 1996 Cardiff, Wales, UK). Metalorganic vapor phase epitaxy 1996: Proceedings of the Eighth International Conference on Metalorganic Vapor Phase Epitaxy, Cardiff, Wales, UK, June 9-13, 1996. North-Holland, 1997.

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3

International Conference on Metalorganic Vapor Phase Epitaxy (6th 1992 Cambridge, Mass.). Metalorganic vapor phase epitaxy 1992: Proceedings of the Sixth International Conference on Metalorganic Vapor Phase Epitaxy, Cambridge, MA, USA, 8-11 June 1992. North-Holland, 1992.

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International Conference on Metalorganic Vapor Phase Epitaxy (7th 1994 Yokohama, Japan). Metalorganic vapor phase epitaxy 1994: Proceedings of the Seventh International Conference on Metalorganic Vapor Phase Epitaxy, Yokohama, Japan, 31 May-3 June 1994. North-Holland, 1994.

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5

International, Conference on Metalorganic Vapor Phase Epitaxy (3rd 1986 Universal City Calif ). Metalorganic vapor phase epitaxy 1986: Proceedings of the Third International Conference on Metalorganic Vapor Phase Epitaxy, Universal City, CA, USA, 13-17 April 1986. North-Holland, 1986.

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6

International Conference on Metalorganic Vapour Phase Epitaxy (9th 1998 La Jolla, Calif.). Metalorganic vapor phase epitaxy 1998: Proceedings of the ninth International Conference on Metalorganic Vapour Phase Epitaxy, La Jolla, California, USA, May 31-June 4, 1998. North-Holland, 1998.

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7

International Conference on Metalorganic Vapor Phase Epitaxy (5th 1990 Aachen, Germany). Metalorganic vapor phase epitaxy 1990: Proceedings of the Fifth International Conference on Metalorganic Vapor Phase Epitaxy and Workshop on MOMBE, CBE, GSMBE, and Related Techniques, Aachen, Germany, 18-22 June 1990. North-Holland, 1991.

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8

International Conference on Metalorganic Vapor Phase Epitaxy (10th 2000 Sapporo, Japan). ICMOVPE-X: Proceedings of the Tenth International Conference on Metalorganic Vapor Phase Epitaxy, Sapporo, Japan, 5-9 June 2000. Elsevier, 2000.

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9

International Conference on Metalorganic Vapor Phase Epitaxy (10th 2000 Sapporo, Japan). ICMOVPE-X: Proceedings of the Tenth International Conference on Metalorganic Vapor Phase Epitaxy, Sapporo, Japan, 5-9 June 2000. Elsevier, 2000.

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10

International Conference on Metalorganic Vapor Phase Epitaxy (6th 1992 Cambridge, Mass.). Metalorganic vapor phase epitaxy: Sixth international conference, June 8-11, 1992, Hyatt Regency Cambridge, Cambridge, Massachusetts : conference digest. Institute of Electrical and Electronics Engineers, 1992.

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11

Irvine, Stuart, and Peter Capper, eds. Metalorganic Vapor Phase Epitaxy (MOVPE). Wiley, 2019. http://dx.doi.org/10.1002/9781119313021.

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Capper, Peter, and Stuart Irvine. Metalorganic Vapor Phase Epitaxy: Growth, Materials Properties, and Applications. Wiley & Sons, Incorporated, John, 2019.

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13

Capper, Peter, and Stuart Irvine. Metalorganic Vapor Phase Epitaxy: Growth, Materials Properties, and Applications. Wiley & Sons, Incorporated, John, 2019.

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14

Capper, Peter, Safa Kasap, Arthur Willoughby, and Stuart Irvine. Metalorganic Vapor Phase Epitaxy: Growth, Materials Properties and Applications. Wiley & Sons, Limited, John, 2019.

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Capper, Peter, Safa Kasap, Arthur Willoughby, and Stuart Irvine. Metalorganic Vapor Phase Epitaxy: Growth, Materials Properties and Applications. Wiley & Sons, Limited, John, 2019.

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16

Cho, Joe S. Low pressure metal-organic vapor phase epitaxy (MOVPE) of ZnCdS/GaAs: Growth, characterization, and device application. 1995.

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17

Metalorganic vapor phase epitaxy: Sixth international conference, June 8-11, 1992, Hyatt Regency Cambridge, Cambridge, Massachusetts : Conference digest. Institute of Electrical and Electronics Engineers, 1992.

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18

Vvedensky, Dimitri D. Quantum dots: Self-organized and self-limiting assembly. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.6.

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Abstract:
This article describes the self-organized and self-limiting assembly of quantum dots, with particular emphasis on III–V semiconductor quantum dots. It begins with a background on the second industrial revolution, highlighted by advances in information technology and which paved the way for the era of ‘quantum nanostructures’. It then considers the science and technology of quantum dots, followed by a discussion on methods of epitaxial growth and fabrication methodologies of semiconductor quantum dots and other supported nanostructures, including molecular beam epitaxy and metalorganic vapor-ph
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