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Journal articles on the topic 'Films organosiliciés'

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1

SAKATA, Jiro, Minoru YAMAMOTO, and Masana HIRAI. "Gas permeability of plasma polymerized films prepared from various organosilicic compounds." KOBUNSHI RONBUNSHU 45, no. 6 (1988): 527–29. http://dx.doi.org/10.1295/koron.45.527.

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2

Kaczmarek, Anna M., and Pascal Van Der Voort. "Light-Emitting Lanthanide Periodic Mesoporous Organosilica (PMO) Hybrid Materials." Materials 13, no. 3 (January 24, 2020): 566. http://dx.doi.org/10.3390/ma13030566.

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Periodic mesoporous organosilicas (PMOs) have a well ordered mesoporous structure, a high thermal and mechanical stability and a uniform distribution of organic functionalities in the pore walls. The organic groups allow PMOs to be modified and functionalized by using a wide range of organic reactions. Since their first report in 1999, PMOs have found a vast range of applications, such as for catalysis, adsorbents, low-k films, biomedical supports and also for optical applications. Optical applications are very interesting as PMOs offer the possibility of designing advanced luminescent hybrid materials comprising of organic components, yet with much higher stability and very good processability. Despite their promising possibilities, the optical properties of pristine PMOs and PMOs grafted with d-metal or f-metal ions and complexes have been explored less frequently. In this review, we aimed to overview the exciting light emitting properties of various reported lanthanide PMO hybrid materials and interest the reader in this promising application for lanthanide PMO materials.
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3

Bao, Xiao Ying, and X. S. Zhao. "Morphologies of Large-Pore Periodic Mesoporous Organosilicas." Journal of Physical Chemistry B 109, no. 21 (June 2005): 10727–36. http://dx.doi.org/10.1021/jp050449k.

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4

Barczak, M., E. Skwarek, W. Janusz, A. Dąbrowski, and S. Pikus. "Functionalized SBA-15 organosilicas as sorbents of zinc(II) ions." Applied Surface Science 256, no. 17 (June 2010): 5370–75. http://dx.doi.org/10.1016/j.apsusc.2009.12.082.

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5

Burleigh, Mark C., Michael A. Markowitz, Shalini Jayasundera, Mark S. Spector, Chris W. Thomas, and Bruce P. Gaber. "Mechanical and Hydrothermal Stabilities of Aged Periodic Mesoporous Organosilicas." Journal of Physical Chemistry B 107, no. 46 (November 2003): 12628–34. http://dx.doi.org/10.1021/jp035189q.

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6

Zhu, Guiru, Qihua Yang, Hua Zhong, Dongmei Jiang, and Can Li. "Phase Transformation of the Periodic Mesoporous Organosilicas Assisted by Organotrialkoxysilane." Journal of Physical Chemistry B 111, no. 28 (July 2007): 8027–33. http://dx.doi.org/10.1021/jp071913j.

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7

BAO, X., X. ZHAO, X. LI, and J. LI. "Pore structure characterization of large-pore periodic mesoporous organosilicas synthesized with varying SiO2/template ratios." Applied Surface Science 237, no. 1-4 (October 15, 2004): 380–86. http://dx.doi.org/10.1016/s0169-4332(04)01026-8.

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8

Liu, Jian, Qihua Yang, Mahendra P. Kapoor, Norihiko Setoyama, Shinji Inagaki, Jie Yang, and Lei Zhang. "Structural Relation Properties of Hydrothermally Stable Functionalized Mesoporous Organosilicas and Catalysis." Journal of Physical Chemistry B 109, no. 25 (June 2005): 12250–56. http://dx.doi.org/10.1021/jp0509109.

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9

Vercaemst, Carl, Petra E. de Jongh, Johannes D. Meeldijk, Bart Goderis, Francis Verpoort, and Pascal Van Der Voort. "Ethenylene-bridged periodic mesoporous organosilicas with ultra-large mesopores." Chemical Communications, no. 27 (2009): 4052. http://dx.doi.org/10.1039/b907631j.

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10

Inagaki, Shinji, Shiyou Guan, Qihua Yang, Mahendra P. Kapoor, and Toyoshi Shimada. "Direct synthesis of porous organosilicas containing chiral organic groups within their framework and a new analytical method for enantiomeric purity of organosilicas." Chem. Commun., no. 2 (2008): 202–4. http://dx.doi.org/10.1039/b714163g.

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11

Bao, Xiao Ying, Xu Li, and X. S. Zhao. "Synthesis of Large-Pore Methylene-Bridged Periodic Mesoporous Organosilicas and Its Implications." Journal of Physical Chemistry B 110, no. 6 (February 2006): 2656–61. http://dx.doi.org/10.1021/jp0561120.

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12

Na, Wei, Qi Wei, Ze-Chang Zou, Qun-Yan Li, and Zuo-Ren Nie. "Mesoporous organosilicas with ultra-large pores: Mesophase transformation and bioadsorption properties." Journal of Colloid and Interface Science 346, no. 1 (June 2010): 61–65. http://dx.doi.org/10.1016/j.jcis.2010.02.020.

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13

Vercaemst, Carl, Heiner Friedrich, Petra E. de Jongh, Alex V. Neimark, Bart Goderis, Francis Verpoort, and Pascal Van Der Voort. "Periodic Mesoporous Organosilicas Consisting of 3D Hexagonally Ordered Interconnected Globular Pores." Journal of Physical Chemistry C 113, no. 14 (March 16, 2009): 5556–62. http://dx.doi.org/10.1021/jp810316y.

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14

Tang, Yadan, and Kai Landskron. "CO2-Sorption Properties of Organosilicas with Bridging Amine Functionalities Inside the Framework." Journal of Physical Chemistry C 114, no. 6 (January 27, 2010): 2494–98. http://dx.doi.org/10.1021/jp9095612.

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15

Hoffmann, Frank, Martin Güngerich, Peter J. Klar, and Michael Fröba. "Vibrational Spectroscopy of Periodic Mesoporous Organosilicas (PMOs) and Their Precursors: A Closer Look." Journal of Physical Chemistry C 111, no. 15 (April 2007): 5648–60. http://dx.doi.org/10.1021/jp0668596.

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16

Cho, Eun-Bum, Oc Hee Han, Sunha Kim, Dukjoon Kim, and Mietek Jaroniec. "Multifunctional periodic mesoporous organosilicas with bridging groups formed via dynamic covalent chemistry." Chemical Communications 46, no. 25 (2010): 4568. http://dx.doi.org/10.1039/c0cc00704h.

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17

Wang, Peiyuan, Liang Zhao, Ren’an Wu, Hua Zhong, Hanfa Zou, Jie Yang, and Qihua Yang. "Phosphonic Acid Functionalized Periodic Mesoporous Organosilicas and Their Potential Applications in Selective Enrichment of Phosphopeptides." Journal of Physical Chemistry C 113, no. 4 (January 6, 2009): 1359–66. http://dx.doi.org/10.1021/jp8093534.

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18

Jaroniec, Mietek, and Leonid A. Solovyov. "Assessment of ordered and complementary pore volumes in polymer-templated mesoporous silicas and organosilicas." Chemical Communications, no. 21 (2006): 2242. http://dx.doi.org/10.1039/b604283j.

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19

Gao, Meng, Shuhua Han, Yongfeng Hu, and Lijuan Zhang. "Enhanced Fluorescence in Tetraylnitrilomethylidyne–Hexaphenyl Derivative-Functionalized Periodic Mesoporous Organosilicas for Sensitive Detection of Copper(II)." Journal of Physical Chemistry C 120, no. 17 (April 21, 2016): 9299–307. http://dx.doi.org/10.1021/acs.jpcc.6b01837.

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20

Poli, Evelyne, Estíbaliz Merino, Urbano Díaz, Daniel Brunel, and Avelino Corma. "Different Routes for Preparing Mesoporous Organosilicas Containing the Tröger’s Base and Their Textural and Catalytic Implications." Journal of Physical Chemistry C 115, no. 15 (March 24, 2011): 7573–85. http://dx.doi.org/10.1021/jp2002854.

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21

Camarota, B., Y. Goto, S. Inagaki, E. Garrone, and B. Onida. "Electron-Rich Sites at the Surface of Periodic Mesoporous Organosilicas: A UV−Visible Characterization of Adsorbed Iodine." Journal of Physical Chemistry C 113, no. 47 (November 3, 2009): 20396–400. http://dx.doi.org/10.1021/jp906696f.

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22

Liang, Yucang, Marianne Hanzlik, and Reiner Anwander. "PMO[KIT-5]-n: synthesis of highly ordered three-dimensional periodic mesoporous organosilicas with Fm3m symmetry." Chemical Communications, no. 4 (2005): 525. http://dx.doi.org/10.1039/b411146j.

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23

Trammell, Scott A., Brian J. Melde, Daniel Zabetakis, Jeffrey R. Deschamps, Michael A. Dinderman, Brandy J. Johnson, and Anne W. Kusterbeck. "Electrochemical detection of TNT with in-line pre-concentration using imprinted diethylbenzene-bridged periodic mesoporous organosilicas." Sensors and Actuators B: Chemical 155, no. 2 (July 2011): 737–44. http://dx.doi.org/10.1016/j.snb.2011.01.039.

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24

Pan, Yu-Chi, Hao-Yiang Wu, Chia-Chun Kao, Hsien-Ming Kao, Yaw-Nan Shieh, George T. K. Fey, Jen-Hsuan Chang, and Hui-Hsu Gavin Tsai. "Model System for Solid-State NMR Study on Co-condensation Behavior of Silicon Precursors in Periodic Mesoporous Organosilicas." Journal of Physical Chemistry C 113, no. 42 (September 23, 2009): 18251–58. http://dx.doi.org/10.1021/jp905626g.

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25

Trindade, Fabiane de Jesus, Eduardo Rezende Triboni, Bruna Castanheira, and Sergio Brochsztain. "Color-Tunable Fluorescence and White Light Emission from Mesoporous Organosilicas Based on Energy Transfer from 1,8-Naphthalimide Hosts to Perylenediimide Guests." Journal of Physical Chemistry C 119, no. 48 (November 19, 2015): 26989–98. http://dx.doi.org/10.1021/acs.jpcc.5b07912.

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26

Pan, Yu-Chi, Hao-Yiang Wu, Guang-Liang Jheng, Hui-Hsu Gavin Tsai, and Hsien-Ming Kao. "Ordered and Hydrothermally Stable Cubic Periodic Mesoporous Organosilicas with SBA-1 Mesostructures: Synthesis, Characterization, Solid-State NMR Spectroscopy, and DFT Calculations." Journal of Physical Chemistry C 113, no. 7 (January 23, 2009): 2690–98. http://dx.doi.org/10.1021/jp807534m.

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27

Grudzien, Rafal M., Stanislaw Pikus, and Mietek Jaroniec. "Synthesis and Properties of Ordered Mesoporous Organosilicas with Vinyl and Mercaptopropyl Surface Groups: The Effect of Ligand Concentration on Pore Structure." Journal of Physical Chemistry C 113, no. 12 (March 5, 2009): 4875–84. http://dx.doi.org/10.1021/jp900120g.

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28

Grudzien, Rafal M., Jonathan P. Blitz, Stanislaw Pikus, and Mietek Jaroniec. "Cage-like mesoporous organosilicas with isocyanurate bridging groups synthesized by soft templating with poly(ethylene oxide)–poly(butylene oxide)–poly(ethylene oxide) block copolymer." Journal of Colloid and Interface Science 333, no. 1 (May 2009): 354–62. http://dx.doi.org/10.1016/j.jcis.2009.01.029.

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29

Wang, Yan, Narcís Homs, and Pilar Ramírez de la Piscina. "Ti-containing hybrid mesoporous organosilicas as photocatalysts for H2 production from ethanol." Journal of Materials Research and Technology, July 2021. http://dx.doi.org/10.1016/j.jmrt.2021.07.104.

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