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HandWiki. Marchywka Effect. Encyclopedia. Available online: https://encyclopedia.pub/entry/31015 (accessed on 23 September 2026).
HandWiki. Marchywka Effect. Encyclopedia. Available at: https://encyclopedia.pub/entry/31015. Accessed September 23, 2026.
HandWiki. "Marchywka Effect" Encyclopedia, https://encyclopedia.pub/entry/31015 (accessed September 23, 2026).
HandWiki. (2022, October 25). Marchywka Effect. In Encyclopedia. https://encyclopedia.pub/entry/31015
HandWiki. "Marchywka Effect." Encyclopedia. Web. 25 October, 2022.
Marchywka Effect
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The Marchywka effect refers to electrochemical cleaning of diamond using an electric field induced with remote electrodes.

electrochemical cleaning electric field diamond

References

  1. United States Patent Number 5269890 http://patft.uspto.gov/netacgi/nph-Parser?Sect1=PTO1&Sect2=HITOFF&d=PALL&p=1&u=%2Fnetahtml%2FPTO%2Fsrchnum.htm&r=1&f=G&l=50&s1=5269890.PN.&OS=PN/5269890&RS=PN/5269890
  2. Marchywka, MJ; Pehrsson, PE; Binari, SC; Moses, DJ (February 1993). "Electrochemical Patterning of Amorphous Carbon on Diamond". Journal of the Electrochemical Society 140 (2): L19–L22. doi:10.1149/1.2221093. Bibcode: 1993JElS..140L..19M.  full text https://web.archive.org/web/20100215201426/http://www.spottext.com/marchywka/J.Electrochem.Soc.140.L19.Marchywka.pdf
  3. Pleskov, YV "The Electrochemistry of Diamond" in Alkire, RC; Kolb, DM ed(2003). Advances In Electrochemical Science and Engineering pg 224 (Wiley-VCH). ISBN:3527302115, ISBN:978-3-527-30211-6 https://books.google.com/books?id=L4qLPz5Gtg0C&pg=PA265&lpg=PA265&dq=marchywka+moses+binari&source=bl&ots=6VpEvy0io4&sig=k_78Hi2rO92Z6Rc9uD1h-tIwRoU&hl=en&sa=X&oi=book_result&resnum=7&ct=result#PPA224,M1
  4. 3.0.CO;2-C. PMID 29710991. http://www.drexel.edu/coas/chemistry/Faculty%20PDFs/2008-09%20Faculty%20Publications%20List.pdf. " id="ref_4">Bradley, JC; Ma, Z (1999). "Contactless Electrodeposition of Palladium Catalysts". Angew. Chem. Int. Ed. Engl. 38 (11): 1663–1666. doi:10.1002/(SICI)1521-3773(19990601)38:11<1663::AID-ANIE1663>3.0.CO;2-C. PMID 29710991. http://www.drexel.edu/coas/chemistry/Faculty%20PDFs/2008-09%20Faculty%20Publications%20List.pdf. 
  5. Jaeger, MD; et., al; Day, A. R.; Thorpe, M. F.; Golding, B. (May 11, 1998). "Resistivity of boron-doped diamond microcrystals". Applied Physics Letters 72 (19): 2445. doi:10.1063/1.121680. Bibcode: 1998ApPhL..72.2445J. http://biophysics.asu.edu/thorpe/publications/196.pdf. 
  6. D'Evelyn MP "Surface Properties of Diamond" in Prelas, Popovici, Bigelow ed(1997). Handbook of Industrial Diamonds and Diamond Films (CRC Press). ISBN:0824799941, ISBN:978-0-8247-9994-6 https://books.google.com/books?id=X3qe9jzYUAQC&pg=PA980&lpg=PA980&dq=marchywka+pehrsson+binari+moses&source=bl&ots=si0MDVVGRg&sig=Qom4jutbLYZhBdxIQ8ISSUB0P7M&hl=en&ei=5J4zStX2Coi_twe80sS6CQ&sa=X&oi=book_result&ct=result&resnum=9#PPA89,M1
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  9. Bradley, JC; et., al; Crawford, Jeffrey; Eckert, Jennifer; Ernazarova, Karima; Kurzeja, Thomas; Lin, Muduo; McGee, Michael et al. (September 18, 1997). "Creating electrical contacts between metal particles using directed electrochemical growth". Nature 389 (6648): 268–271. doi:10.1038/38464. Bibcode: 1997Natur.389..268B.  https://dx.doi.org/10.1038%2F38464
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  11. Marchywka, MJ; Pehrsson, PE; Moses, D; Pehrsson, PE; Moses, DJ (May 1993). "Electrochemical Patterning of Amorphous Carbon on Diamond.". in Diismukes. Honolulu: ECS. pp. 626–631. ISBN 9781566770606. https://books.google.com/books?id=vEGZ9loshAsC&q=marchywka+hawaii&pg=PR5. 
  12. Kaempffert, W (May 22, 1955). "High Pressures and High Temperatures Open New World in Electrochemistry". New York Times: E9. http://select.nytimes.com/gst/abstract.html?res=F10A14F63B5410718EDDAB0A94DD405B8589F1D3. 
  13. Ramesham, R (March 1998). "Effect of annealing and hydrogen plasma treatment on the voltammetric and impedance behavior of the diamond electrode". Thin Solid Films 315 (2): 222–228. doi:10.1016/S0040-6090(97)00592-0. Bibcode: 1998TSF...315..222R.  https://dx.doi.org/10.1016%2FS0040-6090%2897%2900592-0
  14. Pehrsson, PE; Long, JP; Marchywka, MJ; Butler, JE (December 1995). "Electrochemically induced surface chemistry and negative electron affinity on diamond (100)". Appl. Phys. Lett. 67 (23): 3414. doi:10.1063/1.115264. Bibcode: 1995ApPhL..67.3414P. http://link.aip.org/link/?APPLAB/67/3414/1. Retrieved 2019-05-05.  full text
  15. Szunerits, Sabine; Boukherroub, Rabah (2008). "Different strategies for functionalization of diamond surfaces". J Solid State Electrochem 12 (10): 1205–1218. doi:10.1007/s10008-007-0473-3.  https://dx.doi.org/10.1007%2Fs10008-007-0473-3
  16. Prins, JF (2003). "Ion implantation of diamond for electronic applications". Semicond. Sci. Technol. 18 (3): S27–S33. doi:10.1088/0268-1242/18/3/304. Bibcode: 2003SeScT..18S..27P.  https://dx.doi.org/10.1088%2F0268-1242%2F18%2F3%2F304
  17. United States Patent Number 5385762 http://patft.uspto.gov/netacgi/nph-Parser?Sect1=PTO1&Sect2=HITOFF&d=PALL&p=1&u=%2Fnetahtml%2FPTO%2Fsrchnum.htm&r=1&f=G&l=50&s1=5385762.PN.&OS=PN/5385762&RS=PN/5385762
  18. Lai, PF; Prawer, S; Bursill, LA (Jan 2001). "Recovery of diamond after irradiation at high energy and annealing". Diamond and Related Materials 10 (1): 82–86. doi:10.1016/S0925-9635(00)00406-4. Bibcode: 2001DRM....10...82L.  https://dx.doi.org/10.1016%2FS0925-9635%2800%2900406-4
  19. Baumann, PK (1998). "Surface cleaning, electronic states and electron affinity of diamond(100), (111) and (110) surfaces". Surface Science 409 (2): 320–335. doi:10.1016/S0039-6028(98)00259-3. Bibcode: 1998SurSc.409..320B. http://cat.inist.fr/?aModele=afficheN&cpsidt=2339856. 
  20. Characterization of cobalt-diamond (100) interfaces: electron affinity and Schottky barrier https://archive.today/20120911205439/http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6THY-48C8NBW-1M&_user=10&_rdoc=1&_fmt=&_orig=search&_sort=d&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=5cebdcae33e554c728c949a34cbcd0bf
  21. Baumann, PK; Nemanich, RJ (1996). "Characterization of cobalt-diamond (100) interfaces: electron affinity and Schottky barrier". Applied Surface Science 104–105 (2): 267–273. doi:10.1016/S0169-4332(96)00156-0. Bibcode: 1996ApSS..104..267B.  https://dx.doi.org/10.1016%2FS0169-4332%2896%2900156-0
  22. Hochedez publication list http://homepage.oma.be/hochedez/CV-JFH-En-web.htm
  23. Marchywka, M; Hochedez, JF; Geis, MW; Socker, DG; Moses, D; Goldberg, RT (1991). "Ultraviolet photoresponse characteristics of diamond diodes". Applied Optics 30 (34): 5011–5013. doi:10.1364/AO.30.005011. PMID 20717311. Bibcode: 1991ApOpt..30.5011M. http://www.opticsinfobase.org/ao/abstract.cfm?uri=ao-30-34-5011. 
  24. Butler, JE (Spring 2003). "CVD Diamond: Maturity and Diversity". Electrochemical Society Interface: 22–26. http://www.electrochem.org/dl/interface/spr/spr03/IF3-03-Pages22-26.pdf. 
  25. Wang, CF; Hu, EL; Yang, J.; Butler, J. E. (May 2007). "Fabrication of suspended single crystal diamond devices by electrochemical etch". Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures 25 (3): 730–733. doi:10.1116/1.2731327. Bibcode: 2007JVSTB..25..730W.  https://dx.doi.org/10.1116%2F1.2731327
  26. Zalalutdinov, MK; Baldwin, JW; Pate, BB; Yang, J; Butler, JE; Houston, BH (May 2008). "Single Crystal Diamond Nanomechanical Dome Resonator". NRL Review Nanoscience Technology: 190–191. https://www.nrl.navy.mil/content_images/08Nano_Zalalutdinov.pdf. 
  27. 3.0.CO;2-#.  https://dx.doi.org/10.1002%2F%28SICI%291521-3757%2819990601%29111%3A11%3C1768%3A%3AAID-ANGE1768%3E3.0.CO%3B2-%23" id="ref_27">Bradley, JC; Zhongming, M (1999). "Berührungsloses elektrolytisches Abscheiden von Palladiumkatalysatoren". Angewandte Chemie 111 (11): 1768–1771. doi:10.1002/(SICI)1521-3757(19990601)111:11<1768::AID-ANGE1768>3.0.CO;2-#.  https://dx.doi.org/10.1002%2F%28SICI%291521-3757%2819990601%29111%3A11%3C1768%3A%3AAID-ANGE1768%3E3.0.CO%3B2-%23
  28. Greentree, Andrew; Olivero, Paolo; Draganski, Martin; Trajkov, Elizabeth; Rabeau, James R; Reichart, Patrick; Gibson, Brant C; Rubanov, Sergey et al. (May 2006). "Critical components for diamond-based quantum coherent devices". J. Phys.: Condens. Matter 18 (21): S825–S842. doi:10.1088/0953-8984/18/21/S09. Bibcode: 2006JPCM...18S.825G. http://www.qcaustralia.org/Publications/2006/Greentree_Olivero_et%20al.pdf. 
  29. United States Patent Number 7521304 http://patft.uspto.gov/netacgi/nph-Parser?Sect1=PTO1&Sect2=HITOFF&d=PALL&p=1&u=%2Fnetahtml%2FPTO%2Fsrchnum.htm&r=1&f=G&l=50&s1=7521304.PN.&OS=PN/7521304&RS=PN/7521304
  30. United States Patent Number 7084071 http://patft.uspto.gov/netacgi/nph-Parser?Sect1=PTO1&Sect2=HITOFF&d=PALL&p=1&u=%2Fnetahtml%2FPTO%2Fsrchnum.htm&r=1&f=G&l=50&s1=7084071.PN.&OS=PN/7084071&RS=PN/7084071
  31. United States Patent Number 7501330 http://patft.uspto.gov/netacgi/nph-Parser?Sect1=PTO1&Sect2=HITOFF&d=PALL&p=1&u=%2Fnetahtml%2FPTO%2Fsrchnum.htm&r=1&f=G&l=50&s1=7501330.PN.&OS=PN/7501330&RS=PN/7501330
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