
Zhixiang Zeng, Prof. Ningbo institute of materials technology and engineering, CAS
Email: zengzhx@nimte.ac.cn
Telephone:
Address: 浙江省宁波市镇海区庄市大道519号
Postcode: 315201
Research Areas
Separation of oil/water mixture; bio-inspired nanostructure; super-hydrophobic
Education
Publications
Papers
(1) Robust Superhydrophilicity and Under-water Superoleophobicity Cellulose Sponge for Highly Effective Oil/water Separation, Green chemistry, 2015, corresponding author
(2) Ni-P synergetic deposition: electrochemical deposited high active Ni as catalyst for chemical deposition, RSC Advanced, 2015, corresponding author
(3) Achieving excellent anti-corrosion and tribologicalperformance by tailoring the surface morphology and chemical composition of aluminum alloys, RSC Advanced, 2015, corresponding author
(4) Nano-structural Ni matrix films Synthesized by Electrochemical/ Chemical Composite Depositions, J. Electrochem. Society, 2014, corresponding author
(5) Patterned Ni-P alloy films prepared by “Reducing-discharging”, ACS App. Mater. Inter. , 2014, corresponding author
(6) Three-Dimensional Structured Sponge with High Oil Wettability for Clean-up of Oil Contaminations and Separation of Oil-Water Mixtures, Polymer Chemistry, 2014, corresponding author
(7) 1. Patterned tailored hydrophobic films designed by synergy effect of electrochemical deposition and chemical deposition, Chemical Communications, 2013, corresponding author
(8) 2. Fabrication of adhesive superhydrophobic Ni-Cu-P alloy coatings with high mechanical strength by one step electrodeposition., Colloids and surfaces A: Physicochemical and Engineering Aspects, 2013, corresponding author
(9) Micro/nano-Texture Design for Improving Tribological Properties of DLC-IL Composite Films, Nanoscience and Nanotechnology Letters, 2012, 第 3 作者
(10) Role of complexing ligands in trivalent chromium electrodeposition , Surface and coatings technology, 2011, first author
(11) Mechanical properties of Cr-WNT coatings, Surface and coatings technology, 2009, first author
(12) Electroreduction mechanism of trivalent chromium in the present of formic acid, Electrochemistry Communication , 2009, first author
(13) Designed fabrication of hard Cr-Cr2O3-Cr3C7 coatings for anti-wear application, Acta Materialia , 2009, first author
(14) Electrochemical corrosion behavior of multiwalled carbon nanotube doped hard chromium coatings electrodeposited from Cr(III) baths, Journal of the Electrochemical Society, 2009, first author
(15) A review of recent patents on trivalent chromium plating, Recent Patents on Materials Science , 2009, first author
(16) Anti-wear properties of Cr-C and Ni-Co alloy coatings as substitutes for conventional nanocrystalline Cr coatings, Journal of Physics D: Applied Physics, 2008, first author
(17) 三价铬电镀工艺中试研究, 电镀与环保, 2008, first author
(18) Electrochemical corrosion behavior of chromium-phosphorus coatings electrodeposited from trivalent chromium baths , Electrochimica Acta, 2008, first author
(19) Electrodeposition and tribological behavior of amorphous chromium-alumina composite coatings, Surface and Coatings Technology, 2008, first author
(20) Correlation Between the Structure and Wear Behavior of Chromium Coatings Electrodeposited from Trivalent Chromium Baths, Tribology Letters, 2008, first author
(21) Tribological behaviors of amorphous Cr coatings electrodeposited from Cr(III) bath under ionic liquid lubrication, Electrochemical and Solid-State Letters, 2007, first author
(22) Fabrication of a nanocrystalline Cr–C layer with excellent anti-wear performance, Materials Letters, 2007, first author
(23) 三价铬电镀硬铬及镀层性能的研究, 电镀与环保, 2006, first author
(24) Tribological and electrochemical behavior of thick Cr–C alloy coating electrodeposited in trivalent chromium bath as an alternative to conventional Cr coatings, Electrochimica Acta, 2006, first author
(25) The correlation between the hardness and tribological behaviour of electroplated chromium coatings sliding against ceramic and steel counterparts, Surface and Coatings Technology, 2006, first author
Students
现指导学生
于全耀 硕士研究生 070305-高分子化学与物理