2016
DOI: 10.1007/s10934-016-0327-4
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Synthesis of silicate-1 monolith and its catalytic application

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Cited by 10 publications
(4 citation statements)
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“…After 12 h, the intensity of the peak at 1125 cm -1 increases further and two new peaks at 1167 and 1200 cm -1 also emerge. These two additional peaks can be assigned to the tetrahedral asymmetric stretching vibration of νas(SiO4), [20][21][22] evidencing that after 12 h of reaction, the formation of tetrahedral skeleton is achieved. XRD patterns of this sample after 12 h confirmed that the diffractions characteristic of MFI were observable in Figure S7a.…”
Section: Synthesis Of All-silicon Mfi Zeolitementioning
confidence: 89%
See 1 more Smart Citation
“…After 12 h, the intensity of the peak at 1125 cm -1 increases further and two new peaks at 1167 and 1200 cm -1 also emerge. These two additional peaks can be assigned to the tetrahedral asymmetric stretching vibration of νas(SiO4), [20][21][22] evidencing that after 12 h of reaction, the formation of tetrahedral skeleton is achieved. XRD patterns of this sample after 12 h confirmed that the diffractions characteristic of MFI were observable in Figure S7a.…”
Section: Synthesis Of All-silicon Mfi Zeolitementioning
confidence: 89%
“…The resonance at ca. -112 ppm is characteristic of the Si(4Si) species [19][20][21][22] and evidently becomes more defined and enhanced as the crystallization time is extended, further evidencing that the crystallinity of the material increased over time.…”
Section: Synthesis Of All-silicon Mfi Zeolitementioning
confidence: 95%
“…To date, photocatalytic degradation has been one effective way of treating various water pollutants, and semiconductor photocatalysts have been widely investigated. Over several decades of studies, many semiconductor photocatalysts have been found, such as TiO 2 , 1,2 SnO 2 , 3 ZrO 2 , 4 and ZnO. 5 They possess a high degradation capacity toward toxic and recalcitrant chemical species through relatively simple and low-cost procedures.…”
Section: Introductionmentioning
confidence: 99%
“…Molecular sieves or zeolites are a class of crystalline microporous materials that find extensive applications in catalysis, 1,2 adsorbation, [3][4][5] and ion exchange. 6,7 Their diversities in the form of thin films significantly extend applications to separation membranes [8][9][10] and functional coatings.…”
Section: Introductionmentioning
confidence: 99%