1 |
张雪杰, 李亮, 蔡志强, 等. 改性化合物对聚酰胺膜材料亲水性及抗污染性能影响的分子力学计算与实验研究[J]. 化工学报, 2012, 63(6): 1957-1966.
|
|
ZhangX J, LiL, CaiZ Q, et al. Effects of modification chemical on hydrophilic and antifouling properties of polyamide membranes:molecular mechanics calculation and experimental investigation[J]. CIESC Journal, 2012, 63(6): 1957-1966.
|
2 |
潘春佑, 徐国荣, 李露, 等. 聚酰胺反渗透复合膜改性技术研究进展[J]. 膜科学与技术, 2016, 36(6): 133-138.
|
|
PanC Y, XuG R, LiL, et al. Developments and perspectives on the polyamide-based reverse osmosis desalination membranes[J]. Membrane Science and Technology, 2016, 36(6): 133-138.
|
3 |
GutmanJ, HerzbergM, WalkerS L. Biofouling of reverse osmosis membranes: positively contributing factors of sphingomonas[J]. Environmental Science & Technology, 2014, 48(23): 13941-13950.
|
4 |
CastricumH L, SahA, KreiterR, et al. Hydrothermally stable molecular separation membranes from organically linked silica[J]. Journal of Materials Chemistry, 2008, 18(18): 2150-2158.
|
5 |
CastricumH L, SahA, KreiterR, et al. Hybrid ceramic nanosieves: stabilizing nanopores with organic links[J]. Chemical Communications, 2008, (9): 1103-1105.
|
6 |
KanezashiM, YadaK, YoshiokaT, et al. Design of silica networks for development of highly permeable hydrogen separation membranes with hydrothermal stability[J]. Journal of the American Chemical Society, 2009, 131(2): 414-415.
|
7 |
KanezashiM, YadaK, YoshiokaT, et al. Organic-inorganic hybrid silica membranes with controlled silica network size: preparation and gas permeation characteristics[J]. Journal of Membrane Science, 2010, 348 (1): 310-318.
|
8 |
漆虹, 韩静, 江晓骆, 等. 有机-无机复合SiO2膜的制备及水蒸气稳定性能研究[J]. 无机材料学报, 2010, 25(7): 758-764.
|
|
QiH, HanJ, JiangX L, et al. Preparation and hydrothermal stability of organic-inorganic hybrid silica membrane[J]. Journal of Inorganic Materials, 2010, 25(7): 758-764.
|
9 |
QiH, HanJ, XuN, et al. Hybrid organic-inorganic microporous membranes with high hydrothermal stability for the separation of carbon dioxide[J]. ChemSusChem, 2010, 3(12): 1375-1378.
|
10 |
XuR, WangJ H, KanezashiM, et al. Development of robust organosilica membranes for reverse osmosis[J]. Langmuir, 2011, 27(23): 13996-13999.
|
11 |
XuR, KanezashiM, YoshiokaT, et al. Tailoring the affinity of organosilica membranes by introducing polarizable ethenylene bridges and aqueous ozone modification[J]. ACS Applied Materials & Interfaces, 2013, 5(13): 6147-6154.
|
12 |
XuR, IbrahimS M, KanezashiM, et al. New insights into the microstructure-separation properties of organosilica membranes with ethane, ethylene, and acetylene bridges[J]. ACS Applied Materials & Interfaces, 2014, 6(12): 9357-9364.
|
13 |
YamamotoK, OhshitaJ, MizumoT, et al. Preparation of hydroxyl group containing bridged organosilica membranes for water desalination[J]. Separation and Purification Technology, 2015, 156: 396-402.
|
14 |
胡笛, 徐彩虹. 巯基-乙烯基加成反应合成含硅聚合物的研究进展[J]. 高分子通报, 2011, (10): 111-118.
|
|
HuD, XuC H. Research progress of silicon containing polymers by thiol-ene chemistry[J]. Polymer Bulletin, 2011, (10): 111-118.
|
15 |
吴建兵, 凌丽霞, 马国章, 等. 巯基-乙烯基点击反应在紫外光固化过程中的应用[J]. 高分子材料科学与工程, 2013, 29(10): 169-174.
|
|
WuJ B, LingL X, MaG Z, et al. The application of thiol-ene click reaction in UV curing process[J]. Polymer Materials Science & Engineering, 2013, 29(10): 169-174.
|
16 |
AsaedaM, YangJ, SakouY. Porous silica-zirconia (50%) membranes for pervaporation of iso-propyl alcohol (IPA)/water mixtures[J]. Journal of Chemical Engineering of Japan, 2002, 35(4): 365-371.
|
17 |
XuR, WangJ, KanezashiM, et al. Reverse osmosis performance of organosilica membranes and comparison with the pervaporation and gas permeation properties[J]. AIChE Journal, 2013, 59(4): 1298-1307.
|
18 |
HanY H, TaylorA, MantleM D, et al. Sol-gel-derived organic-inorganic hybrid materials[J]. Journal of Non-Crystalline Solids, 2007, 353(3): 313-320.
|
19 |
EsquivelD, CanckE D, Jimenez-SanchidrianC, et al. Formation and functionalization of surface Diels-Alder adducts on ethenylene-bridged periodic mesoporous organosilica[J]. Journal of Materials Chemistry, 2011, 21(29): 10990-10998.
|
20 |
SasidharanM, BhaumikA. Novel and mild synthetic strategy for the sulfonic acid functionalization in periodic mesoporous ethenylene-silica[J]. ACS Applied Materials & Interfaces, 2013, 5(7): 2618-2625.
|
21 |
YamamotoK, OhshitaJ, MizumoT, et al. Synthesis of organically bridged trialkoxysilanes bearing acetoxymethyl groups and applications to reverse osmosis membranes: acetoxymethyl-containing bridged silica membrane[J]. Applied Organometallic Chemistry, 2016, 31(3): e3580.
|
22 |
ThommesM, MorellJ, CychoszK A, et al. Combining nitrogen, argon, and water adsorption for advanced characterization of ordered mesoporous carbons (CMKs) and periodic mesoporous organosilicas (PMOs)[J]. Langmuir, 2013, 29(48): 14893-14902.
|
23 |
FanC, NguyenV, ZengY, et al. Novel approach to the characterization of the pore structure and surface chemistry of porous carbon with Ar, N2, H2O and CH3OH adsorption[J]. Microporous and Mesoporous Materials, 2015, 209: 79-89.
|
24 |
IbrahimS M, NagasawaH, KanezashiM, et al. Organosilica bis(triethoxysilyl)ethane (BTESE) membranes for gas permeation (GS) and reverse osmosis (RO): the effect of preparation conditions on structure, and the correlation between gas and liquid permeation properties[J]. Journal of Membrane Science, 2017, 526: 242-251.
|
25 |
GeiseG M, ParkH B, SagleA C, et al. Water permeability and water/salt selectivity trade off in polymers for desalination[J]. Journal of Membrane Science, 2011, 369(1/2): 130-138.
|
26 |
XuR, LinP, ZhangQ, et al. Development of ethenylene-bridged organosilica membranes for desalination applications[J]. Industrial & Engineering Chemistry Research, 2016, 55(7): 2183-2190.
|
27 |
ParkH, FreemanB, ZhangZ B, et al. Highly chlorine-tolerant polymers for desalination[J]. Angewandte Chemie International Edition, 2010, 47(32): 6019-6024.
|
28 |
HatakeyamaE S, GabrielC J, WiesenauerB R, et al. Water filtration performance of a lyotropic liquid crystal polymer membrane with uniform, sub-1-nm pores[J]. Journal of Membrane Science, 2011, 366(1/2): 62-72.
|
29 |
KisoY, MuroshigeK, OguchiT, et al. Pore radius estimation based on organic solute molecular shape and effects of pressure on pore radius for a reverse osmosis membrane[J]. Journal of Membrane Science, 2011, 369(1/2): 290-298.
|
30 |
LiL X, LiuN, McPhersonB, et al. Enhanced water permeation of reverse osmosis through MFI-type zeolite membranes with high aluminum contents[J]. Industrial & Engineering Chemistry Research, 2007, 46(5): 1584-1589.
|
31 |
AntonyA, FudiantoR, CoxS, et al. Assessing the oxidative degradation of polyamide reverse osmosis membrane-accelerated ageing with hypochlorite exposure[J]. Journal of Membrane Science, 2010, 347(1/2): 159-164.
|