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Controlled Synthesis of Nanoscale CdTe Urchins 被引量:1

Controlled Synthesis of Nanoscale CdTe Urchins
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摘要 We presented a simple route to prepare nanoscale CdTe urchins in a tri-n-octylphosphine oxide(TOPO) system. CdTe urchins consisted of a core and several attached arms. The arms were ca. 3 nm wide, and their lengths could be controlled with the reaction time. The authors investigated the optical absorption and structural properties of the prepared CdTe. The lengths of the arms could be tuned into CdTe nanourchins, which led to a change in the photophysical properties of the nanoscale CdTe urchins. The results, including transmission electron microscopy(TEM) and absorption spectra, indicated that mesoporous silica and aminopropyltriethoxysilane(APTES) contributed to the formation of nanoscale CdTe urchins. We presented a simple route to prepare nanoscale CdTe urchins in a tri-n-octylphosphine oxide(TOPO) system. CdTe urchins consisted of a core and several attached arms. The arms were ca. 3 nm wide, and their lengths could be controlled with the reaction time. The authors investigated the optical absorption and structural properties of the prepared CdTe. The lengths of the arms could be tuned into CdTe nanourchins, which led to a change in the photophysical properties of the nanoscale CdTe urchins. The results, including transmission electron microscopy(TEM) and absorption spectra, indicated that mesoporous silica and aminopropyltriethoxysilane(APTES) contributed to the formation of nanoscale CdTe urchins.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2009年第2期147-150,共4页 高等学校化学研究(英文版)
基金 Supported by Shanghai City Committee of Science and Technology(Nos.06XD14020, 07JC14058) the Outstanding Young Scholar’ Program by NSFC(No.60225004) Shanghai Pujiang Talent Plan(07PJ14095).
关键词 CDTE NANOPARTICLE SEMICONDUCTOR Mesoporous silica CdTe Nanoparticle Semiconductor Mesoporous silica
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