2011
DOI: 10.1016/j.chroma.2011.03.019
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Application of liquid phase deposited titania nanoparticles on silica spheres to phosphopeptide enrichment and high performance liquid chromatography packings

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Cited by 38 publications
(32 citation statements)
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“…The titania-coated silica particles showed a strong ability to separate adenosine phosphate compounds and good column reproducibility [175]. The column efficiency was reported to be up to 30 000 plates/m when separating basic compounds using 35% acetonitrile as the mobile phase [175]. This study also reported low permeability of K v = 1.56 × 10 -14 m 2 and good column stability under extreme pH condition (pH 7-12) [175].…”
Section: Applications Of Core-shell Particles With Non-silica Shellmentioning
confidence: 84%
See 1 more Smart Citation
“…The titania-coated silica particles showed a strong ability to separate adenosine phosphate compounds and good column reproducibility [175]. The column efficiency was reported to be up to 30 000 plates/m when separating basic compounds using 35% acetonitrile as the mobile phase [175]. This study also reported low permeability of K v = 1.56 × 10 -14 m 2 and good column stability under extreme pH condition (pH 7-12) [175].…”
Section: Applications Of Core-shell Particles With Non-silica Shellmentioning
confidence: 84%
“…The column efficiency was reported to be up to 30 000 plates/m when separating basic compounds using 35% acetonitrile as the mobile phase [175]. This study also reported low permeability of K v = 1.56 × 10 -14 m 2 and good column stability under extreme pH condition (pH 7-12) [175]. In another study, the octadecyl-bonded TiO 2 /SiO 2 showed good stability at high pH (pH 9-10) using phosphate buffer [129].…”
Section: Applications Of Core-shell Particles With Non-silica Shellmentioning
confidence: 99%
“…Few reports have focused on the Tb-doped PET-SiO 2 hybrids. They have great potential to fabricate highly spinnable fluorescent PET optical fiber, and their applications have been extended to the fields of coatings [15,16], membranes [17], OLED [18], and so on.…”
Section: Introductionmentioning
confidence: 99%
“…[21][22][23] Many methods have been developed to prepare nanoparticles include the sol-gel method, hydrothermal treatment method, self-assembly method and liquid phase deposition method (LPD), etc. [24][25][26][27] Among these methods, LPD was treated as the most promising process due to mild reaction condition, cost-effective and adjustability of nanoparticle properties. 28 In the recent studies, there were a large number of researches about the nanoparticles catalysts for aqueous environmental pollutants.…”
Section: Introductionmentioning
confidence: 99%