Патент США № | 7718707 |
---|---|
Автор(ы) | Kelman и др. |
Дата выдачи | 18 мая 2010 г. |
A set of nanoparticles is disclosed. Each nanoparticle of the set of nanoparticles is comprised of a set of Group IV atoms arranged in a substantially spherical configuration. Each nanoparticle of the set of nanoparticles further having a sphericity of between about 1.0 and about 2.0; a diameter of between about 4 nm and about 100 nm; and a sintering temperature less than a melting temperature of the set of Group IV atoms.
Авторы: | Maxim Kelman (Mountain View, CA), Xuegeng Li (Sunnyvale, CA), Pingrong Yu (Sunnyvale, CA), Karel Vanheusden (Los Altos, CA), David Jurbergs (Austin, TX) |
---|---|
Заявитель: | Innovalight, Inc. (Santa Clara, CA) |
ID семейства патентов | 39543293 |
Номер заявки: | 11/842,466 |
Дата регистрации: | 21 августа 2007 г. |
Document Identifier | Publication Date | |
---|---|---|
US 20080152938 A1 | Jun 26, 2008 | |
Application Number | Filing Date | Patent Number | Issue Date | ||
---|---|---|---|---|---|
60876328 | Dec 21, 2006 | ||||
60901768 | Feb 16, 2007 | ||||
Класс патентной классификации США: | 516/1; 427/212; 428/546 |
Класс совместной патентной классификации: | B22F 1/0022 (20130101); B22F 9/12 (20130101); B82Y 10/00 (20130101); B82Y 30/00 (20130101); C01B 33/021 (20130101); H01L 29/068 (20130101); H01L 29/0673 (20130101); H01L 29/0665 (20130101); B22F 9/12 (20130101); B22F 2999/00 (20130101); B22F 2999/00 (20130101); B22F 2202/13 (20130101) |
Класс международной патентной классификации (МПК): | B05D 7/00 (20060101); B01F 3/04 (20060101); B22F 3/00 (20060101); C09K 3/30 (20060101) |
Область поиска: | ;516/1 ;427/212 ;428/546 |
4040849 | August 1977 | Greskovich et al. |
4262631 | April 1981 | Kubacki |
4330358 | May 1982 | Grabmaier et al. |
4407858 | October 1983 | Hanke et al. |
4876218 | October 1989 | Pessa et al. |
4910167 | March 1990 | Lee et al. |
5057163 | October 1991 | Barnett et al. |
5141893 | August 1992 | Ito et al. |
5262357 | November 1993 | Alivisatos et al. |
5336335 | August 1994 | Hall et al. |
5476248 | December 1995 | Kobayashi et al. |
5556791 | September 1996 | Stevens et al. |
5576248 | November 1996 | Goldstein |
RE36156 | March 1999 | Hall et al. |
6111191 | August 2000 | Hall et al. |
6515314 | February 2003 | Duggal et al. |
6559479 | May 2003 | Ludemann |
6815218 | November 2004 | Jacobson et al. |
6878871 | April 2005 | Scher et al. |
6951996 | October 2005 | Timans et al. |
6984265 | January 2006 | Raguse et al. |
6991972 | January 2006 | Lochtefeld et al. |
7375011 | May 2008 | Kahen |
2002/0192956 | December 2002 | Kizilyalli et al. |
2003/0003300 | January 2003 | Korgel et al. |
2003/0226498 | December 2003 | Alivisatos et al. |
2004/0000476 | January 2004 | Cho et al. |
2005/0008880 | January 2005 | Klaus et al. |
2005/0104125 | May 2005 | Sato et al. |
2005/0126628 | June 2005 | Scher et al. |
2005/0183767 | August 2005 | Yu et al. |
2005/0205410 | September 2005 | Babko-Malyi et al. |
2006/0042414 | March 2006 | Sankaran et al. |
2006/0051505 | March 2006 | Kortshagen et al. |
2006/0154036 | July 2006 | Klaus et al. |
2006/0237719 | October 2006 | Colfer et al. |
2007/0218657 | September 2007 | Bet et al. |
2007/0252500 | November 2007 | Ranish et al. |
2008/0152938 | June 2008 | Kelman et al. |
2008/0160265 | July 2008 | Hieslmair et al. |
2008/0160733 | July 2008 | Hieslmair et al. |
2009/0001517 | January 2009 | Swanson et al. |
2009/0053878 | February 2009 | Kelman et al. |
1085075 | Mar 2001 | EP | |||
1551057 | Jul 2005 | EP | |||
2346528 | Aug 2000 | GB | |||
2005/332913 | Dec 2005 | JP | |||
WO 99/26726 | Jun 1999 | WO | |||
WO 2004/023527 | Mar 2004 | WO | |||
WO 2004/068536 | Aug 2004 | WO | |||
2006/096201 | Sep 2006 | WO | |||
WO 2006/096201 | Sep 2006 | WO | |||
WO 2008/039757 | Apr 2008 | WO | |||
WO 2008/073763 | Jun 2008 | WO | |||
WO 2008/076744 | Jun 2008 | WO | |||
Christiansen, T. et al., "Standard Operating Procedure: Spin-on-Glass Surface Level Characterization," Jun. 8, 2000. cited by other . Jang, W. I. et al., "Fabrication of MEMS Devices by Using Anhydrous HF Gas-phase Etching with Alcoholic Vapor" J. Micromech. Microeng., vol. 12, 2002, pp. 297-306; published by IOP Publishing Ltd. cited by other . Kubacki, R. M., "Low Temperature Plasma Deposition of Silicon Nitride to Produce Ultra-Reliable, High Performance, Low Cost Sealed Chip-on-Board (SCOB) Assemblies" IEEE Transactions on Components, Packaging, and Manufacturing Technology--Part A, vol. 18, No. 3, Sep. 1995, pp. 471-477. cited by other . Lee, J. H. et al, "Gas-Phase Etching of Sacrificial Oxides Using Anhydrous HF and CH.sub.3OH," 10.sup.th Annual Internat'l Workshop on MEMS, IEEE, Jan. 26-30, 1997, pp. 448-453. cited by other . Orfert, M. et al., "Plasma Enhanced Chemical Vapor Deposition of SiN-films for Passivation of Three-Dimensional Substrates" Surface and Coatings Technology 116-119, 1999, pp. 622-628; published by Elsevier Science S.A. cited by other . Schmid, P. et al, "Plasma deposition of Si-N and Si-O passivation layers on three-dimensional sensor devices" Surface and Coating Technology 98, 1998, pp. 1510-1517; published by Elsevier Science S.A. cited by other . Ai et al., "Preparation and characterization of Si sheets by renewed SSP technique," Journal of Crystal Growth, vol. 270 (2004), pp. 446-454. cited by other . Q. Ban, et al., "Substrate Materials for Poly-CSiTF Solar Cells: Optimization of Silicon Sheet from Powder", Acta Metallurgica Sinica, vol. 18, No. 3 (Jun. 2005), pp. 184-188. cited by other . Q Ban et al., "Study on Preparation Technology of Polycrystalline Silicon Thin Film Solar Cells Based on SSP Substrate", Acta Energiae Solaris Sinica, vol. 25, No. 1 (Feb. 2004), pp. 95-98. cited by other . Bet et al., "Laser Forming of Silicon Films Using Nanoparticle Precursor" Journal of Electronic Materials, vol. 35, No. 5 (2006), pp. 993-1004. cited by other . Britton, D.T. and M. Harting, "Printed Nanoparticulate Composites for Silicon Thick Film Electronics," Pure and Applied Chemistry, vol. 78, No. 9 (2006), 1723-1739. cited by other . Ghosh et al., "Theory of the electrical and photovoltaic properties of polycrystalline silicon" Journal of Applied Physics, vol. 51, No. 1 (1980) pp. 446-454. cited by other . Grovenor, C R M, "Grain boundaries in semiconductors," J. Phys. C: Solid State Phys., vol. 18 (1985), pp. 4079-4119. cited by other . Liang et al, "Characterisation of direct epitaxial silicon thin film solar cells on a low-cost substrate," Solar Energy Materials & Solar Cells, vol. 80 (2003), pp. 181-193. cited by other . Matare, H.F., "Carrier transport at grain boundaries in semiconductors," Journal of Applied Physics, vol. 56, No. 10 (1984), pp. 2605-2631. cited by other . McCann et al, "A Review of Thin Film Crystalline Silicon for Solar Cell Applications. Part 1: Native Substrates," Solar Energy Materials and Solar Cells, vol. 68, No. 2 (May 2001), pp. 135-171. cited by other . Moller et al., "Sintering of Ultrafine Silicon Powder," Journal of the American Ceramic Society, vol. 68, No. 6 (1985), pp. 320-325. cited by other . Yang et al., "Effect of pressure on melting temperature of silicon," Journal of Physics: Condensed Matter, vol. 15 (2003), pp. 4961-4965. cited by other . "Crystalline Silicon Thin-Film Solar Cells," a Product Information Sheet published by Fraunhofer Institut Solare Energie Systeme, Oct. 2001, pp. 1-6. cited by other . D.V. Melnikov et al., "Quantum Confinement in Phosphorus-Doped Silicon Nanocrystals", Physical Review Letters, vol. 92 (2004), pp. 046802-1-046802-4. cited by other . Y.H. Tang et al., "Microstructure and Filed-Emission Characteristics of Boron-Doped SI Nanoparticle Chains", Applied Physics Letters, vol. 79 (2001), pp. 1673-1675. cited by other . I. Ifuku et al., "Fabrication of Nanocrystalline Silicon with Small Spread of Particle Size by Pulsed Gas Plasma", Japanese Journal of Applied Physics, vol. 36 (1997), pp. 4031-4034. cited by other . A.N. Goldstein, "The Melting of Silicon Nanocrystals: Submicron Thin-film Structures Derived from Nanocrystal Precursors", Applied Physics A, V. 62 (1996) pp. 33-37. cited by other . T. Shiga et al., "Photovoltaic performance and stability of CdTe/polymeric hybrid solar cells using a C60 buffer layer," Solar Energy Materials and Solar Cells, vol. 90, No. 12, (Jan. 2006), pp. 1849-1858; published by Elsevier Science Publishers, Amsterdam, NL. cited by other . International Search Report and Written Opinion for PCT/US2007/087205, mailed May 28, 2008. cited by other . International Search Report for PCT/IB2004/000221 (WO 2004/068536 A2), mailed Aug. 30, 2004. cited by other . International Search Report for PCT/US2007/077765, mailed Feb. 1, 2008. cited by other . International Search Report/Written Opinion for PCT/US2007/086376, mailed May 28, 2008. cited by other . International Search Report/Written Opinion for PCT/US2007/086432, mailed May 28, 2008. cited by other . International Search Report and Written Opinion for PCT/US2007/076549, mailed Jul. 25, 2008. cited by other . International Search Report for PCT/US2007/070134, mailed Aug. 11, 2008. cited by other . International Search Report for PCT/US2008/059038, mailed Jul. 18, 2008. cited by other . International Search Report and Written Opinion for PCT/US2008/062182 dated Nov. 4, 2008. cited by other . J. R. Heath et al., "Nanocrystal Seeding: A low temperature route to polycrystalline Si films," Applied Phys. Lett. vol. 64, No. 26, Jun. 27, 1994, pp. 3569-3571. cited by other . G. Samdani et al., "Tiny Particles Aim for Big Markets;" Chemical Eng., Aug. 1994, pp. 35-39. cited by other . A. N. Goldstein et al, "Melting in Semiconductor Nanocrystals," Science, vol. 256, No. 5062, Jun. 5, 1992, pp. 1425-1427. cited by other . Ph. Buffat et al., "Side Effect on the Melting Temperature of Gold Particles," Physical Review A, vol. 13, No. 6, Jun. 1976. cited by other . F. Ercolessi et al., "Melting of Small Gold Particles: Mechanism and Size Effects," Physical Review Letters, vol. 66, No. 7, Feb. 18, 1991, pp. 911-914; published by The American Physical Society. cited by other . M. Wautelet, "Estimation of the variation of the melting temperature with the size of small particles, on the basis of a surface-phonon instability model,:" J. Phys. D: Appl Phys, vol. 24 (1991), pp. 343-346; published by IOP Publishing Ltd. cited by other . R. S. Berry et al., "Melting of Clusters and Melting," Physical Review A, vol. 30, No. 2, Aug. 1984; published by The American Physical Society. cited by other . Office Action in U.S. Appl. No. 11/875,261 dated Apr. 16, 2009. cited by other . Office Action issued in U.S. Appl. No. 11/875,261 mailed Oct. 14, 2009, received Oct. 19, 2009. cited by other . Office Action issued in U.S. Appl. No. 11/775,509 mailed Oct. 15, 2009, received Oct. 19, 2009. cited by other. |