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Paper Publications
[1]changzhenqi.UV-INDUCED POLYMERIZATION OF SIZE-CONTROLLED PLATINUM/POLY[STYRENE-DIVINYLBENZENE-TRI(PROPYLENE GLYCOL) DIACRYLATE] HYDROPHOBIC CATALYST BEADS IN MICROFLUIDICS.NUCLEAR ENGINEERING AND TECHNOLOGY,2015,47(6):738-745.
[2]changzhenqi.Synthesis of size-controlled Pt/C/PTFE hydrophobic catalyst pellets in a capillary-based microfluidic system.INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2014,39(30):16944-16952.
[3]changzhenqi.Fabrication of size-controlled CeO2 microparticles by a microfluidic sol-gel process as an analog preparation of ceramic nuclear fuel particles.JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY,2013,50(8):774-780.
[4]changzhenqi.A side-by-side capillaries-based microfluidic system for synthesizing size- and morphology-controlled magnetic anisotropy janus beads.ADVANCED POWDER TECHNOLOGY,2014,26(1):156-162.
[5]changzhenqi.Fabrication of electro- and color-responsive CB/PTFE Janus beads in a simple microfluidic device.MATERIALS LETTERS,2015,142258-261.
[6]changzhenqi.Fabrication and characteristics of Li4SiO4 pebbles by a novel capillary-based microfluidic wet process.JOURNAL OF NUCLEAR MATERIALS,2013,440(1-3):283-287.
[7]changzhenqi.Fabrication of Uniform Ce/Eu Oxide Microparticles by a Microfluidic Co-Sol-Gel Process as an Analog Preparation of MA-Bearing Ceramic Nuclear Fuel Particles.NUCLEAR SCIENCE AND ENGINEERING,2015,181(2):216-224.
[8]changzhenqi.Fabrication of the Li2TiO3 tritium breeder pebbles by a capillary-based microfluidic wet process.JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY,2016,53(2):250-257.
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