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马祖驹
2017-08-31 14:52  

姓名:马祖驹

所在系所:材料物理与化学系

职称:副教授

邮箱:zjma@outlook.com

课题组主页:

教育背景

2013年毕业于中科院福建物质结构研究所,材料物理与化学专业获工学博士学位

2008年毕业于西南大学,物理学专业获理学学士学位

工作履历

20177-现在 安徽工业大学 材料科学与工程学院 副教授

20161-20177月 中科院福建物质结构研究所 副研究员

20137-201512月 中科院福建物质结构研究所 助理研究员

课程教学

讲授本科生课程《热力学与统计物理学》。

研究领域

基于第一性原理的功能材料设计与性能调控,具体涉及:光催化材料、非线性光学材料、热电材料及太阳能电池材料等;

表界面光电催化过程模拟。

半导体及复杂分子体系电子结构计算。

学术成果

主持的科研项目:

1. 国家自然科学基金面上项目,21771182,基于高通量计算的(III-V)1?x(II-VI)x型光解水制氢材料的筛选及性能调控,2018/1-2021/12,63万元,主持;

2. 国家自然科学基金青年项目,21501177,具有d10-d10金属间相互作用的银铋三元氧化物的光催化氧化性能研究2016/01-2018/1220万元,主持;

论文

(1) Ma ZJ, Wu KC*, Sun BZ, He C, Band engineering of AgSb1-xBixO3 for photocatalytic water oxidation under visible light, J Mater Chem A, 2015, 3: 8466-8474.

(2) Ma Z, Hu J, Sa R, Li Q, Zhang Y, Wu K*, Screening novel candidates for mid-IR nonlinear optical materials from I3–V–VI4 compounds, J Mater Chem C, 2017.

(3) Ma Z, Wu K*, Sa R, Li Q, Zhang Y, Ab initio study of elasticity, piezoelectricity, and nonlinear optical performance in monoclinic NaAsSe2, J Alloy Compd, 2013, 568: 16-20.

(4) Ma Z, Sa R, Li Q, Wu K*, Interfacial electronic structure and charge transfer of hybrid graphene quantum dot and graphitic carbon nitride nanocomposites: insights into high efficiency for photocatalytic solar water splitting, Phys Chem Chem Phys, 2016, 18: 1050-1058.

(5) Ma Z, Wu K*, Sa R, Li Q, He C, Yi Z, Mechanism of enhanced photocatalytic activities on N-doped La2Ti2O7: An insight from density-functional calculations, Int J Hydrogen Energ, 2015, 40: 980-989.

(6) Ma Z, Yi Z, Sun J, Wu K*, Electronic and Photocatalytic Properties of Ag3PC4VI (C = O, S, Se): A Systemic Hybrid DFT Study, J Phys Chem C, 2012, 116: 25074-25080.

(7) Ma Z, Wu K*, Sa R, Ding K, Li Q, Strain-induced improvements on linear and nonlinear optical properties of SrB[sub 4]O[sub 7] crystal, Aip Advances, 2012, 2: 032170.

合作论文

(1).Zhang H, Ma Z, Duan J, Liu H, Liu G, Wang T, Chang K, Li M, Shi L, Meng X, Wu K, Ye J*, Active Sites Implanted Carbon Cages in Core–Shell Architecture: Highly Active and Durable Electrocatalyst for Hydrogen Evolution Reaction, ACS Nano, 2016, 10: 684-694.

(2).Zhang H, Ma Z, Liu G, Shi L, Tang J, Pang H, , Wu K, Takei T, Zhang J, Yamauchi Y, Ye J*, Highly active nonprecious metal hydrogen evolution electrocatalyst: ultrafine molybdenum carbide nanoparticles embedded into a 3D nitrogen-implanted carbon matrix, NPG Asia Mater, 2016, 8: e293.

(3).Long X, Ma Z, Yu H, Gao X, Pan X, Chen X, Yang S, Yi Z*, Porous FeNi oxide nanosheets as advanced electrochemical catalysts for sustained water oxidation, J Mater Chem A, 2016.

(4).Li J, Ma Z, He C, Li Q, Wu K*, An effective strategy to achieve deeper coherent light for LiB3O5, J Mater Chem C, 2016, 4: 1926-1934.

(5).Pan M-y, Ma Z-j, Liu X-c, Xia S-q*, Tao X-t, Wu K-c*, Ba(4)AgGa(5)Pn(8) (Pn = P, As): new pnictide-based compounds with nonlinear optical potential, J Mater Chem C, 2015, 3: 9695-9700.

(6).Zhang H, Shan X, Ma Z, Zhou L, Zhang M, Lin P, Hu S, Ma E, Li R, Du S*, A highly luminescent chameleon: fine-tuned emission trajectory and controllable energy transfer, J Mater Chem C, 2014, 2: 1367-1371.

(7).Zou G, Ma Z, Wu K, Ye N*, Cadmium-rare earth oxyborates Cd4ReO(BO3)(3) (Re=Y, Gd, Lu): congruently melting compounds with large SHG responses, Journal of Materials Chemistry, 2012, 22: 19911-19918.

(8).Hu J, Ma Z, Sa R, Zhang Y, Wu K*, A promising lead-free fluoride carbonate SHG material designed from a theoretical perspective, Dalton Trans, 2017, 46: 2635-2642.

(9).Li J, Ma Z, Wu K*, Thermoelectric enhancement in sliver tantalate via strain-induced band modification and chemical bond softening, RSC Advances, 2017, 7: 8460-8466.

(10). Li Q, Qiao L, Chen R, Ma Z, Si R, Yao Y*, Wu K*, Carbon monoxide oxidation catalysed by defective palladium chloride: DFT calculations, EXAFS, and in situ DRIRS measurements, Phys Chem Chem Phys, 2016, 18: 2784-2791.

(11).Hu J, Ma Z, Li J, He C, Li Q, Wu K*, Strain engineering of nonlinear boron phosphate for phase matching in the ultraviolet region: a first-principles study, J Phys D Appl Phys, 2016, 49: 85103-85103.

(12).Sun B-Z, Ma Z, He C, Wu K*, Anisotropic thermoelectric properties of layered compounds in SnX2 (X = S, Se): a promising thermoelectric material, Phys Chem Chem Phys, 2015, 17: 29844-29853.

(13).Sun B-Z, Ma Z, He C, Wu K*, Enhanced thermoelectric performance of layered SnS crystals: the synergetic effect of temperature and carrier concentration, Rsc Advances, 2015, 5: 56382-56390.

(14).Ren J, Ma Z, He C, Sa R, Li Q, Wu K*, Structure, elastic and piezoelectric properties of A(3)BO(7) (A = Ga, Al; B = P, As) compounds: A DFT study, Comp Mater Sci, 2015, 106: 1-4.

(15).Li Q, Wei Y, Sa R, Ma Z, Wu K*, A novel Pd3O9@alpha-Al2O3 catalyst under a hydroxylated effect: high activity in the CO oxidation reaction, Phys Chem Chem Phys, 2015, 17: 32140-32148.

(16).He C, Ma Z-J, Sun B-Z, Sa R-J, Wu K*, The electronic, optical and ferroelectric properties of BiFeO3 during polarization reversal: A first principle study, J Alloy Compd, 2015, 623: 393-400.

(17).He C, Ma Z, Sun B-Z, Li Q, Wu K*, Ab-initio study on the electronic, optical and ferroelectric properties of LiOsO3, Comp Mater Sci, 2015, 105: 11-17.

(18).Zhao X-C, Sun B-Z, He C, Ma Z-J, Li Q-H, Wu K-C*, Thermoelectric Properties of the CuGaTe2 Crystal from First-principles Calculations: the Role of Doping and Temperature, Chin J Struct Chem, 2014, 33: 1431-1435.

(19).Shi X, Ma Z, He C, Wu K*, Strong SHG responses predicted in binary metal halide crystal HgI2, Chem Phys Lett, 2014, 608: 219-223.

(20).Du K-Z, Feng M-L, Qi X-H, Ma Z-J, Li L-H, Li J-R, Du C-F, Zou G-D, Huang X-Y*, (enH(2))(4.5) In((AsS4)-S-V)(3) As-2(III)(mu-S-2)S-3 Cl and (enH(2))(MnAsAsS6)-As-III-S-V: two thioarsenates(III, V) with mixed-valent optical properties, Dalton Trans, 2014, 43: 2733-2736.

(21).Wu W-T, Wu K-C*, Ma Z-J, Sa R-J, Wei Y-Q, Li Q-H, The First Principles Investigations of the Thermoelectric Properties of GaN with p- and n-Type Doping, Chin J Struct Chem, 2012, 31: 1613-1617.

(22).Wu W, Wu K*, Ma Z, Sa R, Doping and temperature dependence of thermoelectric properties of AgGaTe2: First principles investigations, Chem Phys Lett, 2012, 537: 62-64.

(23).Du K-Z, Feng M-L, Li L-H, Hu B, Ma Z-J, Wang P, Li J-R, Wang Y-L, Zou G-D, Huang X-Y*, Ni(phen)(3) (2)Sb18S29: A Novel Three-Dimensional Framework Thioantimonate(III) Templated by Ni(phen)(3) Complexes, Inorg Chem, 2012, 51: 3926-3928.

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