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杨剑

-
教授
博士生导师
硕士生导师
- 性别:男
- 毕业院校:中国科学技术大学
- 学历:博士研究生毕业
- 学位:博士生
- 在职信息:在职
- 所在单位:化学与化工学院
- 入职时间: 2011-05-11
- 学科:无机化学
- 电子邮箱:yangjian@sdu.edu.cn
访问量:
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[221]
杨剑.
VS4 Nanoparticles Rooted by a-C Coated MWCNTs as an Advanced Anode Material in Lithium Ion Batteries.
6,
149,
2016.
-
[222]
杨剑.
Double-Walled Sb@TiO2?x Nanotubes as a Superior High-Rate and Ultralong-Lifespan Anode Material for.
Adv. Mater.,
2016.
-
[223]
杨剑.
Charge transfer accelerates galvanic replacement for PtAgAu nanotubes with enhanced catalytic activ.
Nano Res,
2016.
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[224]
杨剑.
Design and synthesisof a stable-performance P2- type layered cathode material for sodium ion batteri.
Rsc Adv.,
2016.
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[225]
杨剑.
Hierarchically Porous CuCo2O4 Microflowers:a Superior Anode Materialfor Li-ion Batteries and a Stab.
ELECTROCHIMICA ACTA,
2016.
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[226]
杨剑.
Mesoporous Amorphous Silicon: A Simple Synthesis of a High-Rate and Long-Life Anode Material for Lit.
Angew. Chem. Int. Ed.,
2016.
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[227]
杨剑.
Gold nanorods coated by oxygen-deficient TiO2 as an advanced photocatalyst for hydrogen evolution.
Rsc Adv.,
2016.
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[228]
杨剑.
Surface-disordered and oxygen-deficient LiTi2-xMnx(PO4-y)3 nanoparticles for enhanced lithium-ion st.
JOURNAL OF POWER SOURCES,
2016.
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[229]
杨剑.
Triple-walled SnO2@N-doped carbon@SnO2 nanotubes as an advanced anode material for lithium and sodiu.
J. Mater. Chem. A,
2015.
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[230]
杨剑.
Surface-Amorphous and Oxygen-deficient Li3VO4-d as a Promising Anode Material for Lithium Ion Batter.
Adv. Sci,
2015.
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[231]
杨剑.
Hydrogenated TiO2 Branches Coated Mn3O4 Nanorods as an Advanced Anode Material for Lithium Ion Batte.
ACS Appl. Interface Mater.,
2015.
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[232]
杨剑.
Controlled synthesis of bimetallic Pd-Rh nanoframes and nanoboxes with high catalytic performances.
Nanoscale,,
2015.
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[233]
杨剑.
Porous MnFe2O4 microrods as advanced anodes for Li-ion Batteries.
J. Mater. Chem. A,
2015.
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[234]
杨剑.
Tunnel-structured Na0.54Mn0.50Ti0.51O2 and Na0.54Mn0.50Ti0.51O2/C nanorods as advanced cathode mater.
Chem. Commun,
2015.
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[235]
杨剑.
Hollow Nanospheres of Mesoporous Co9S8 as a High-Capacity and Long-life Anode for Advanced Lithium I.
NANO ENERGY,
2015.
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[236]
杨剑.
Multiwalled Carbon Nanotube@a-C@Co9S8 Nanocomposite: a High-Capacity and Long-life Anode Material fo.
NANOSCALE,
2015.
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[237]
杨剑.
Coaxial MnO/N-doped carbon nanorods for advanced lithium-ion battery anode.
J. Mater. Chem. A,
2015.
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[238]
徐化云 and 杨剑.
Facile synthesis of hierarchically porous NiO microtubes as advanced anode materials for lithium-ion.
journal of materials chemistry A,
2014.
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[239]
杨剑.
Facile synthesis and optical properties of ultrathin Cu-doped ZnSe nanorods.
CrystEngComm,
2013.
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[240]
杨剑.
Porous ZnMn2O4 Microspheres as a Promising Anode Material for Advanced Lithium-ion Batteries.
NANO ENERGY,
2014.