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11篇 您的检索式:作者名="Wiyong"
    题名 作者 年代 出处 被引量
1Phase-con- trolled microwave synthesis of pure monoclinic BiVO4nanoparticles for photocatalytic dye degradation 显示文摘Kanlaya P Andrew N Wiyong K 2015Appl Mater Today2015,1,2:1
2Sythesis and swelling properties of poly superabsorbents 显示文摘Doungporn Y Wiyong K Orawon C 2007Reactive & Functional Polymers2007,67,:1
3Photocatalytic efficiency of TiO 2 /poly[acrylamide- co -(acrylic acid)] composite for textile dye degradation显示文摘Wiyong Kangwansupamonkon Walasinee Jitbunpot Suda Kiatkamjornwong 2010Polymer Degradation and Stability2010,,9:1
4Sythesis and swelling properties of polyEacrylamide-co-(crotonic cid)]superabsorbents显示文摘Doungporn Y Wiyong K Orawon C 2007Reactive & Functional Polymers2007,67,:1
5Photocatalytie effi- ciency of TiOz/poly composite for textile dye degradation 显示文摘Wiyong Kangwansupamonkon Walasinee Jitbun- pot Suda Kiatkamjornwong 2010Polymer Degradation and Stability2010,95,9:1
6Antibacterial effect of spa- rite-coated titanium dioxide for textiles applications显示文摘WIYONG Kangwansupamonkon VICHUTA Lauruengtana SUVIMOL Surassmo 2009Nanomedicine: Nanotechnology Biology and Medicine2009,5,2:1
7Sythesis and swelling properties of poly superabsorbents 显示文摘Doungporn Y Wiyong K Orawon C 2007Reactive & Functional Polymers2007,67,:1
8Preparation of magnetic photocatalyst nanoparticles—TiO 2 /SiO 2 /Mn–Zn ferrite—and its photocatalytic activity influenced by silica interlayer显示文摘Kritapas Laohhasurayotin Sudarat Pookboonmee Duangkamon Viboonratanasri Wiyong Kangwansupamonkon 2012Materials Research Bulletin2012,,6:1
9Synthesis and swelling properties of polyEacrylamide-co-(crotonic eid)] superabsor- bents显示文摘Doung P Wiyong Y Orawon K 2007Reactive & Functional Polymers2007,67,10:1
10Sythcsis and swelling properties of poly superabsorbents 显示文摘Doungpom Y Wiyong K Orawon C 2007Reactive & Functional Polymers2007,67,:1
11Bio-inspired Surface Structure for Slow-release of Urea Fertilizer显示文摘In this work,bio-inspired concepts,including a Self-Healing(SH)and super hydrophobic structure,were used to produce slow-release of urea fertilizer.Following a bottom-up process,an SH layer on the urea granule was produced from a combination of two natural waxes,palm and carnauba,and fabricated by a hot-melt coating process in a pan coater.Another layer for super hydrophobicity was formed by a deposition of submicron-wax and carbon black particles on the SH layer to create a micro-nanostructure during coating.After the heat treatment,a smooth coating and even deposition of waxes throughout the urea surfaces were obtained.The properties of the waxes,a healing mechanism,and releasing profiles were examined using an optical microscope.After cracking of the coated urea surface,the intrinsic self-healing behavior was stimulated by heating the samples above 45℃C,corresponding to high ambient daytime temperatures.Air-trapping behavior was observed at the interphase of the water and coated urea,creating super hydrophobic granule surfaces which act as an invisible layer for water-penetration protection.The releasing profiles of the coated urea in soil revealed that the releasing periods could be significantly extended to four-times longer than those of the uncoated urea.Methus Charoenchai Panida Prompinit Wiyong Kangwansupamonkon Lapporn Vayachuta 2020Journal of Bionic Engineering2020,17,2:0
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