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10篇 您的检索式:作者名="Paulusse"
    题名 作者 年代 出处 被引量
1Adenoids and tonsils, indications for surgery and immunological consequen ces of surgery 显示文摘Paulussed C C laes J C laes G 2000A cta 0 torhinolaryngol Belg2000,54,3:1
2Improvements in the NRC AC-DC transfer capabilities 显示文摘Clark R F Filipski P S Paulusse C 1997IEEE Trans Instrum Meas1997,46,2:1
3Calorimetric thermal voltage converter as a wideband calculable standard of AC-DC difference 显示文摘Filipski P S Clark R F Paulusse D C 1999IEEE Trans Instrum Meas1999,48,2:1
4Adenoids and tonsils , indications for surgery and immunological,consequences of surgery 显示文摘Paulussed C Claes J Claes G 2000Acta Otorhinolaryngol Belg2000,54,3:1
5Ultrasound in polymer chemistry: revival of an established technique 显示文摘Paulusse J M J Sijbesma R P 2006J poly Sci Part A2006,44,:1
6Reversible mechanochemistry of a PdⅡ coordination polymer 显示文摘Paulusse J M J Sijbesma R P 2004Angew Chem Int Ed2004,43,34:1
7Selectivity of mechanochemical chain scission in mixed palladium(Ⅱ) and platinum(Ⅱ) coordination polymers 显示文摘Paulusse J M J Sijbesma R P 2008Chem Commun2008,37,:1
8Reversible switching of the sol-gel transition with ultrasound in rhodium (Ⅰ) and iridium(Ⅰ) coordination networks 显示文摘Paulusse J M J Beek van D J M Sijbesma R P 2007J Am Chem Soc2007,129,:1
9查看详情显示文摘Campos L M Killops K L Sakai R Paulusse M J Damiron D Drockenmuller E Messmore B W Hawker C J 0,,19:1
10Surface brightens up Si quantum dots: direct bandgap-like size-tunable emission显示文摘Colloidal semiconductor quantum dots(QDs)constitute a perfect material for ink-jet printable large area displays,photovoltaics,light-emitting diode,bio-imaging luminescent markers and many other applications.For this purpose,efficient light emission/absorption and spectral tunability are necessary conditions.These are currently fulfilled by the direct bandgap materials.Si-QDs could offer the solution to major hurdles posed by these materials,namely,toxicity(e.g.,Cd-,Pb-or As-based QDs),scarcity(e.g.,QD with In,Se,Te)and/or instability.Here we show that by combining quantum confinement with dedicated surface engineering,the biggest drawback of Si—the indirect bandgap nature—can be overcome,and a‘direct bandgap’variety of Si-QDs is created.We demonstrate this transformation on chemically synthesized Si-QDs using state-of-the-art optical spectroscopy and theoretical modelling.The carbon surface termination gives rise to drastic modification in electron and hole wavefunctions and radiative transitions between the lowest excited states of electron and hole attain‘direct bandgap-like’(phonon-less)character.This results in efficient fast emission,tunable within the visible spectral range by QD size.These findings are fully justified within a tight-binding theoretical model.When the C surface termination is replaced by oxygen,the emission is converted into the well-known red luminescence,with microsecond decay and limited spectral tunability.In that way,the‘direct bandgap’Si-QDs convert into the‘traditional’indirect bandgap form,thoroughly investigated in the past.Katerina Dohnalova Alexander N Poddubny Alexei A Prokofiev Wieteke DAM de Boer Chinnaswamy P Umesh Jos MJ Paulusse Han Zuilhof Tom Gregorkiewicz 2013Light(Science & Applications)2013,2,1:0
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