Flow method and reactor for manufacturing noncrystals

Semiconductor device manufacturing: process – Formation of semiconductive active region on any substrate – On insulating substrate or layer

Reexamination Certificate

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C438S502000, C977S700000, C427S248100, C427S255330, C257SE29071

Reexamination Certificate

active

07316967

ABSTRACT:
A population of nanocrystals having a narrow and controllable size distribution and can be prepared by a segmented-flow method.

REFERENCES:
patent: 5147841 (1992-09-01), Wilcoxon
patent: 5262357 (1993-11-01), Alivisatos et al.
patent: 5293050 (1994-03-01), Chapple-Sokol et al.
patent: 5354707 (1994-10-01), Chapple-Sokol et al.
patent: 5395791 (1995-03-01), Cheng et al.
patent: 5422489 (1995-06-01), Bhargava
patent: 5434878 (1995-07-01), Lawandy
patent: 5492080 (1996-02-01), Ohkawa et al.
patent: 5499260 (1996-03-01), Takahashi et al.
patent: 5505928 (1996-04-01), Alivisatos et al.
patent: 5515393 (1996-05-01), Okuyama et al.
patent: 5525377 (1996-06-01), Gallagher et al.
patent: 5537000 (1996-07-01), Alivisatos et al.
patent: 5541948 (1996-07-01), Krupke et al.
patent: 5585640 (1996-12-01), Huston et al.
patent: 5625456 (1997-04-01), Lawandy
patent: 5711803 (1998-01-01), Pehnt et al.
patent: 5747180 (1998-05-01), Miller et al.
patent: 5751018 (1998-05-01), Alivisatos et al.
patent: 5882779 (1999-03-01), Lawandy
patent: 5985173 (1999-11-01), Gray et al.
patent: 5985353 (1999-11-01), Lawton et al.
patent: 5990479 (1999-11-01), Weiss et al.
patent: 6054495 (2000-04-01), Markowitz et al.
patent: 6057561 (2000-05-01), Kawasaki et al.
patent: 6114038 (2000-09-01), Castro et al.
patent: 6179912 (2001-01-01), Barbera-Guillem et al.
patent: 6207229 (2001-03-01), Bawendi et al.
patent: 6224739 (2001-05-01), Reetz et al.
patent: 6251303 (2001-06-01), Bawendi et al.
patent: 6262129 (2001-07-01), Murray et al.
patent: 6322901 (2001-11-01), Bawendi et al.
patent: 6326144 (2001-12-01), Bawendi et al.
patent: 6379635 (2002-04-01), O'Brien et al.
patent: 6447698 (2002-09-01), Ihara et al.
patent: 6576291 (2003-06-01), Bawendi et al.
patent: 6617583 (2003-09-01), Bawendi et al.
patent: 6633370 (2003-10-01), Lawandy
patent: 6682596 (2004-01-01), Zehnder et al.
patent: 6794265 (2004-09-01), Lee et al.
patent: 6821337 (2004-11-01), Bawendi et al.
patent: 2002/0066401 (2002-06-01), Peng et al.
patent: 2002/0071952 (2002-06-01), Bawendi et al.
patent: 2002/0144644 (2002-10-01), Zehnder et al.
patent: 2003/0017264 (2003-01-01), Treadway et al.
patent: 2004/0091710 (2004-05-01), Bawendi et al.
patent: 2004/0110002 (2004-06-01), Kim et al.
patent: 2005/0112849 (2005-05-01), Stott et al.
patent: WO 95/29473 (1995-11-01), None
patent: WO 98/04740 (1998-02-01), None
patent: WO 98/19963 (1998-05-01), None
patent: WO 98/33070 (1998-07-01), None
patent: WO 98/36376 (1998-08-01), None
patent: WO 98/46372 (1998-10-01), None
patent: WO 99/26299 (1999-05-01), None
patent: WO 00/17103 (2000-03-01), None
patent: WO 00/17642 (2000-03-01), None
patent: WO 00/17655 (2000-03-01), None
patent: WO 00/17656 (2000-03-01), None
patent: WO 01/07689 (2001-02-01), None
Alivisatos et al., “Organization of ‘nanocrystal molecules’ using DNA” Nature 1996, 382, 609-611.
Alivisatos, A.P. “Perspectives on the Physical Chemistry of Semiconductor Nanocrystals”,J. Phys. Chem., 100:13226 (Aug. 1996).
Alivisatos et al., “Semiconductor Clusters, Nanocrystals, and Quantum Dots,”Science, 271:933-937, Feb. 16, 1996.
Bailey, R.E. et al. “Alloyed Semiconductor Quantum Dots: Tuning the Optical Properties without Changing the Particle Size” J. Am. Chem. Soc. 2003, 125, 7100-7106.
Battaglia et al., “Formation of High Quality InP and InAs Nanocrystals in a Noncoordinating Solvent” Nano Letters 2002, 2, 1027-1030.
Bawendi, M. G. et al., “Electronic Structures and Photoexcited-Carrier Dynamics in Nanometer-Size CdSe Clusters.” Physical Review Letters, vol. 65, No. 11, pp. 1623-1626, (1990).
Bawendi et al., “Luminescence properties of CdSe quantum crystallites: resonance between interior and surface localized states,”J. Chem. Phys., 96(2):946-954, 1992.
Bawendi, M. G. et al., “X-ray structural characterization of larger CdSe semiconductor clusters,” J. Chem. Phys., vol. 91, No. 11, pp. 7282-7290, (1989).
Beverloo et al., “Preparation and Microscopic Visualization of Multicolor Luminescent Immunophosphors,”Cytometry, 13:561-570, 1992.
Bruchez, Jr. et al.,Science1998, 281, 2013-2016.
Bunge, S.D. et al. “Growth and morphology of cadmium chalcogenides: the synthesis of nanorods, tetrapods, spheres from CdO and Cd(O2CCH3)2” J. Mater. Chem. 2003, 13, 1705-1709.
Chan et al. “Quantum Dot Bioconjugates for Ultrasensitive Nonisotopic Detection”Science1998, 281, 2016-2018.
Chan et al., Nano Letters 2003, 3, 199-201.
Chen, F. et al. “Synthesis and properties of Lead Selenide Nanocrystal Solids” Mat. Res. Soc. Symp. Proc. 691, 2002, 359-364.
Coe et al.,Nature2002, 420, 800-803.
Colvin et al., “Light-emitting diodes made from cadmium selenide nanocrystals and a semiconducting polymer”Nature, 370(6488):354-357, Aug. 4, 1994.
Correa-Duarte M. A. et al., “Stabilization of CdS semiconductor nanoparticles against photodegradation by a silica coating procedure,” Chemical Physics Letters 286:497-501 (1998).
Cumberland, S.L. et al. “Inorganic Clusters as Single Source Precursors for Preparation of CdSe, ZnSe, and CdSe/ZnS Nanomaterials” Chem. Mater. 2002, 14, 1576-1584.
Dabbousi B.O. et al., “(CdSe)ZnS Core-Shell Quantum Dots: Synthesis and Characterization of a Size Series of Highly Luminescent Nanocrystallites,” The Journal of Physical Chemistry B, 101(46):9463-9475 (1997).
Dabbousi B.O. et al., “Electroluminescence from CdSe quantum-dot/polymer composites,” Appl. Phys. Lett. 66 (11):1316-1318 (1995).
Danek et al., “Synthesis of Luminescent Thin-Film CdSe/ZnSe Quantum Dot Composites Using CdSe Quantum Dots Passivated with an Overlayer of ZnSe”Chem. Mater.,8(1):173-180, 1996.
de Mello, J., et al., “Microscale reactors: nanoscale products,” Lab Chip 2004, 4, 11N-15N.
Edel et al., Chem. Comm. 2002, 1136-1137.
Eisler et al.,Appl. Phys. Lett. 2002, 80, 4614-4616.
Empedocles et al., “Photoluminescense Spectroscopy of Single CdSe Nanocrystallite Quantum Dots”,Phys. Rev. Lett., 77(18):3873 (Oct. 1996).
Gan et al., “Enhanced Photoluminescence and Characterization of Mn-Doped ZnS Nanocrystallites Synthesized in Microemulsion,”Langmuir, 1997 (13):6427-6431, 1997.
Gao M. et al., “Strongly Photoluminenscent CdTe Nanocrystals by Proper Surface Modification,” J. Phys. Chem. B 102:8360-8363 (1998).
Gaponik, N. “Thiol-Capping of CdTe Nanocrystals: An Alternative to Organometallic Synthetic Routes” J. Phys. Chem. B 2002, 106, 7177-7185.
Green M. et al., “Recent advances in the preparation of semiconductors as isolated nanometric particles: new routes to quantum dots,” Chem. Commun., 2235-2241 (1999).
Guha et al., “Hybrid organic-inorganic semiconductor-based light-emitting diodes”J. Appl. Phys., 82(8):4126-4128, Oct. 15, 1997.
Gunther, A. et al., “Transport and reaction in microscale segmented gas-liquid flow” Lab Chip 2004, 4, 278-286.
Guzelian, A.A. et al. “Colloidal chemical synthesis and characterization of InAs nanocrystal quantum dots” Appl. Phys. Lett. 1996, 69, 1432-1434.
Harrison, M.T. et al. “Wet chemical synthesis and spectroscopic study of CdHgTe nanocrystals with strong near-infrared luminescence” Mat. Sci. Eng. B, 2000, 69-70, 355-360.
Hines M.A. et al., “Synthesis and Characterization of Strongly Luminescing ZnS-Capped CdSe Nanocrystals,” J. Phys. Chem. 100:468-471 (1996).
Jarvis et al., “Solution Synthesis and Photoluminescence Studies of Small Crystallites of Cadmium Telluride,”Mat. Res. Soc. Symp. Proc., 272:229-234, 1992.
Kagan et al., “Electronic Energy Transfer in CdSe Quantum Dot Solids,”Physical Review Letters, 76:1517-1520, Feb. 26, 1997.
Kagan et al., “Long-Range Resonance Transfer of Electronic Excitations in Close-Packed CdSe Quantum-Dot Solids,”Physical Review Letters, 54:8633-8643, Sep. 15, 1996.
Kazes et

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