📜Sodium Monochloroacetic Acid置于trisodium Arsenite,水体系中,化学反应生成胂羧基乙酸 参考文献:Palmer,Journal Of The American Chemical Society,1923,Vol. 45,P. 3027,3028 标题:Palmer,Journal Of The American Chemical Society,1923,Vol. 45,P. 3027,3028
专利号:US-9768333-B2 优先权日:2009-02-03 标题:Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles 发明人:PHELPS TOMMY J; LAUF ROBERT J; MOON JI-WON; RONDINONE ADAM JUSTIN; LOVE LONNIE J; DUTY CHAD EDWARD; MADDEN ANDREW STEPHEN; LI YILIANG; IVANOV ILIA N; RAWN CLAUDIA JEANETTE 权利人:UT BATTELLE LLC; UNIV TENNESSEE RES FOUND 摘要:The invention is directed to a method for producing non-oxide semiconductor nanoparticles, the method comprising: (a) subjecting a combination of reaction components to conditions conducive to microbially-mediated formation of non-oxide semiconductor nanoparticles, wherein said combination of reaction components comprises i) anaerobic microbes, ii) a culture medium suitable for sustaining said anaerobic microbes, iii) a metal component comprising at least one type of metal ion, iv) a non-metal component comprising at least one non-metal selected from the group consisting of S, Se, Te, and As, and v) one or more electron donors that provide donatable electrons to said anaerobic microbes during consumption of the electron donor by said anaerobic microbes; and (b) isolating said non-oxide semiconductor nanoparticles, which contain at least one of said metal ions and at least one of said non-metals. The invention is also directed to non-oxide semiconductor nanoparticle compositions produced as above and having distinctive properties.
专利号:US-8759053-B2 优先权日:2009-02-03 标 题 :Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles 发明人:PHELPS TOMMY J; LAUF ROBERT J; MOON JI WON; RONDINONE ADAM J; LOVE LONNIE J; DUTY CHAD EDWARD; MADDEN ANDREW STEPHEN; LI YILIANG; IVANOV ILIA N; RAWN CLAUDIA JEANETTE 权利人:PHELPS TOMMY J; LAUF ROBERT J; MOON JI WON; RONDINONE ADAM J; LOVE LONNIE J; DUTY CHAD EDWARD; MADDEN ANDREW STEPHEN; LI YILIANG; IVANOV ILIA N; RAWN CLAUDIA JEANETTE; UT BATTELLE LLC; UNIV TENNESSEE RES FOUNDATION 摘要:The invention is directed to a method for producing non-oxide semiconductor nanoparticles, the method comprising: (a) subjecting a combination of reaction components to conditions conducive to microbially-mediated formation of non-oxide semiconductor nanoparticles, wherein said combination of reaction components comprises i) anaerobic microbes, ii) a culture medium suitable for sustaining said anaerobic microbes, iii) a metal component comprising at least one type of metal ion, iv) a non-metal component containing at least one non-metal selected from the group consisting of S, Se, Te, and As, and v) one or more electron donors that provide donatable electrons to said anaerobic microbes during consumption of the electron donor by said anaerobic microbes; and (b) isolating said non-oxide semiconductor nanoparticles, which contain at least one of said metal ions and at least one of said non-metals. The invention is also directed to non-oxide semiconductor nanoparticle compositions produced as above and having distinctive properties.
专利号:WO-2012030642-A2 优先权日:2010-09-02 标 题:Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles
专利号:US-2010330367-A1 优先权日:2009-02-03 标题:Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles
专利号:US-2010193752-A1 优先权日:2009-02-03 标题 :Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles
专利号:US-2014220654-A1 优先权日:2009-02-03 标 题:Microbially-mediated method for synthesis of non-oxide semiconductor nanoparticles
参考文献:10.1016/j.jorganchem.2013.07.056 摘要:Nicholson BK, Wilson PS, Nancekivell A. A re-investigation of arsenoacetic acid, (AsCH2COOH)n. Journal of Organometallic Chemistry. 2013 Nov;745-746():80–5. doi: 10.1016/j.jorganchem.2013.07.056.