學(xué)科、專(zhuān)業(yè)領(lǐng)域名稱
|
材料科學(xué)與工程
|
|
學(xué) 術(shù) 職 銜
|
碩士生導(dǎo)師
|
|
導(dǎo) 師 姓 名
|
王華林
|
|
所獲最高學(xué)位及單位
|
博士 大連交通大學(xué)
|
|
職 稱
|
副教授
|
|
工 作 部 門(mén)
|
材料科學(xué)與工程學(xué)院電子材料系
|
|
聯(lián) 系 電 話
|
0411-84106876
13504258759
|
|
電 子 郵 箱
|
whl@djtu.edu.cn
|
|
研 究 方 向
|
光電材料與器件
|
|
學(xué)習(xí)及工作經(jīng)歷
|
||
工作經(jīng)歷:
(1) 2023-02 至
今, 大連交通大學(xué), 材料科學(xué)與工程學(xué)院, 副教授
(2) 2008-07 至 2023-01, 大連交通大學(xué), 材料科學(xué)與工程學(xué)院, 講師
(3) 2006-07 至 2008-06, 大連交通大學(xué), 材料科學(xué)與工程學(xué)院, 助教
學(xué)習(xí)經(jīng)歷:
(1)2008-09 至 2013-12, 大連交通大學(xué), 光電材料與器件, 博士
(2) 2003-09 至 2006-06, 吉林大學(xué), 凝聚態(tài)物理, 碩士
(3)
1999-09 至 2003-06, 吉林大學(xué), 凝聚態(tài)物理, 學(xué)士
|
||
進(jìn)修及訪學(xué)經(jīng)歷
|
||
|
||
承擔(dān)科研項(xiàng)目情況
|
||
國(guó)家自然科學(xué)基金面上項(xiàng)目:
1.鈣鈦礦太陽(yáng)能電池非規(guī)則界面載流子輸運(yùn)擴(kuò)散機(jī)理研究(排名:5/6)
2.C/N/F離子在過(guò)渡金屬后金屬氧化物薄膜中的擴(kuò)散機(jī)理研究(排名:4/6)
3.智能鉆削測(cè)溫刀具及其智慧切削的理論與技術(shù)(排名:7/10)
4.基于“團(tuán)簇加連接原子”模型的透明導(dǎo)電氧化物類(lèi)分子結(jié)構(gòu)單元解析與設(shè)計(jì)研究 (排名
:3/5)
國(guó)家自然科學(xué)基金青年項(xiàng)目:
1.基于元素摻雜及微結(jié)構(gòu)控制的pn型DSSCs光陰極NiO基薄膜光電性能優(yōu)化研究(排名:4/4)
2.鈣鈦礦太陽(yáng)能電池用無(wú)機(jī)空穴傳輸材料CuI的表面鈍化及相關(guān)機(jī)理研究(排名:2/3)
3.a-SiOxNy薄膜化學(xué)鍵結(jié)構(gòu)與缺陷形成機(jī)理的研究(排名:3/4)
省部級(jí)項(xiàng)目:
1.織構(gòu)化BaTiO3基陶瓷燒結(jié)工藝與性能優(yōu)化研究(排名:4/4)
2.全固態(tài)ECL傳感器用ATO薄膜染料吸附性能與光電性能協(xié)同優(yōu)化與機(jī)理研究(排名:7/7)
3.pn-型DSSCs光陰極NiO薄膜的染料吸附性能優(yōu)化研究(排名:4/4)
4.基于堿金屬摻雜與微觀組織結(jié)構(gòu)控制的CuO薄膜氣敏性能優(yōu)化研究(排名:4/5)
5.雙鈣鈦礦型Bi2FeCrO6鐵電薄膜溶膠-凝膠旋涂制備及其微觀組織結(jié)構(gòu)控制與光伏性能優(yōu)化研究(排名:4/4)
6.堿土金屬摻雜對(duì)Cu2FeSnS4薄膜相結(jié)構(gòu)與載流子輸運(yùn)行為影響的研究(排名:5/5)
7.Cu2ZnSnS4薄膜太陽(yáng)能電池吸收層的界面優(yōu)化研究(排名:4/4)
8.柔性透明電極ITO/Ag/ITO復(fù)合薄膜的制備與性能研究(排名:1/5)
9.遼寧省“百千萬(wàn)”人才工程項(xiàng)目(排名:5/5)
10.多元透明導(dǎo)電氧化物團(tuán)簇式設(shè)計(jì)及化學(xué)穩(wěn)定性研究(排名:7/9)
11.pn型DSSCs用光陰極NiO薄膜的制備及其摻雜機(jī)理研究(排名:4/4)
12.低能離子束與玻璃表面相互作用機(jī)理研究(排名:5/6)
13.基于核殼結(jié)構(gòu)的PSC無(wú)機(jī)光陰極CuI電學(xué)性能優(yōu)化研究(排名:7/7)
14.N離子束與Ti02薄膜表面相互作用及N參雜機(jī)理研究(排名:3/5)
15.表面改性與微結(jié)構(gòu)控制優(yōu)化Ag-ITO復(fù)合薄膜的耐彎曲性及其光電性能研究(排名:1/2)
16.氧化亞銅特性參數(shù)對(duì)PSC性能的影響規(guī)律研究(排名:6/6)
17.ATO納米粉體的制備、導(dǎo)電性能優(yōu)化與機(jī)理研究(排名:3/7)
18.團(tuán)簇+連接原子模型下TCO薄膜導(dǎo)電性能的渝滲理論(排名:1/3)
19.石榴石型LiLaZrO系列固態(tài)電解質(zhì)材料“類(lèi)分子結(jié)構(gòu)單元”解析及設(shè)計(jì)(排名:2/4)
市級(jí)項(xiàng)目:
1.NiCr/NiSi薄膜熱電偶界面勢(shì)壘對(duì)載流子輸運(yùn)過(guò)程及測(cè)溫精度影響機(jī)理研究(排名:7/8)
2.離子束與PET表面相互作用的機(jī)理研究(排名:2/2)
3.射頻磁控濺射制備低應(yīng)力SiNx薄膜及其表征 (排名:2/2)
|
||
申請(qǐng)專(zhuān)利情況
|
||
|
||
發(fā)表論文、著作情況
|
||
1.Influence of low-energy ammonia ion/group diffusion on electrical properties of indium tin oxide film(排名:2/10)
2.The effects of additive on properties of Fe doped TiO2 nanoparticles by modified sol-gel method[更新](排名:1/10)
3.The formation mechanism of (001) preferred orientation for anatase TiO2 film prepared by DC pulsed magnetron sputtering (排名:1/9)
4.Effect of NaOH solution on surface textured ZnO: Al films prepared by pulsed direct current magnetron sputtering (排名:2/4)
5.Dependence of the physical properties of Sn-S film prepared by sol-gel spincoating method on annealing temperature(排名:6/8)
6.Cu2ZnSnS4 films with different preferred orientations prepared by pulsed DC magnetron sputtering from a quaternary ceramic target(排名:4/8)
7.Improving Seebeck coefficient of ITO/AZO transparent film thermocouple by ITO (100) preferred orientation(排名:2/9)
8.The nanocrystalline structure of TiO2 film deposited by DC magnetron sputtering at room temperature(排名:2/7)
9.Effect of Doped Boron on the Properties of ZnO Thin Films Prepared by Sol-gel Spin Coating(排名:3/6)
10.Properties of boron-doped ZnO Thin films deposited by pulsed DC magnetron sputtering at different substrate temperatures(排名:3/8)
11.Enhanced optical and electrical properties of NiO thin films prepared by rapid radiation pyrolysis method based on the sol–gel technique(排名:3/5)
12.Structural, morphological,
electrical and optical
properties of SnO2
nanoparticles: influence
of Sb doping (排名:5/7)
13.Coprecipitation synthesis of N, Fe doped anatase TiO2 nanoparticles and photocatalytic mechanism(排名:4/9)
14.Preparation and characterization of TiO2 nanoparticles by two different precipitation methods(排名:7/9)
15.Crystalline size- control of SnO2 nanoparticles with tunable properties prepared by HNO3-ethanol assisted precipitation (排名:5/7)
16.Aluminum- and boron-codoped ZnO ceramics: structural,
morphological and
electrical characterization(排名:5/6)
17.Structural, electrical and optical properties of Kdoped NiO films(排名:3/7)
18.Composition formula of transparent conductive tin doped indium oxide in terms of cluster plus glue atommodel(排名:2/7)
19.Phase evolution and sintering behaviors of Cu2ZnSnS4 powders synthesized by mechanochemical
process with different
milling parameters(排名:4/8)
20.Effects of sputtering voltage and current on the composition and microstructure of the CIGS films prepared by one-step pulsed DC magnetron sputtering(排名:4/8)
21.Effects of Cu doping on the properties of NiO film fabricated using the sol-gel method based on the rapid pyrolysis process(排名:5/7)
22.PREPARATION AND ELECTRICAL PROPERTIES OF ANTIMONY-DOPED TIN OXIDE NANOPARTICLES BY TWO VARIOUS MODIFIED COPRECIPITATION METHODS(排名:4/8)
23.Crystallization Behavior and Properties of B-Doped ZnO Thin Films Prepared by Sol-Gel Method with Di erent Pyrolysis Temperatures(排名 :3/6)
24.PREPARATION AND CHARACTERIZATION OF ATO NANOPARTICLES BY COPRECIPITATION WITH MODIFIED DRYING METHOD (排名:5/6)
25.A FACILE SYNTHESIS OF FULLY POROUS TAZO COMPOSITE AND ITS REMARKABLE GAS SENSITIVE PERFORMANCE(排名:5/7)
26.The relationship between carrier mobility and bicrystalline grains boundary of rutile TiO2 film(排名:2/10)
27.Study on dynamic scaling of morphological evolution of TiO2 film deposited with different O2/Ar flow ratio(排名:1/7)
28.A simple way to investigate the temperature of film growth surface during sputteringprocess(排名:3/9)
29.Study on the chemical bond structure and chemical stability of N doped into TiO2 film by N ion beam implantation(排名:2/9)
30.The investigation of band gap and N chemical bond structure of N-TiO2 film prepared by n ion beam implantation(排名:3/9)
31.A simple route to deposit SiO2 film with resistivity 〉109 Ω/μm (排名:3/9)
32.Preparation of compact CuO films by sol-gel spin coating technique(排名:4/6)
33.Photoelectric and photocatalytic properties of ZnO:Ga powders prepared by sol-gel method(排名:4/6)
34.The influence of anatase titanium dioxide film (001) preferred orientation on N implantation process(排名:2/9)
35.The Diffusion of Low-Energy Methyl Group on ITO Film Surface and Its Impact on Optical-Electrical Properties(排名:3/10)
36.A deep understanding of relationship between reverse time and growth of ITO film deposited by direct current pulsed sputtering (排名:1/9)
37.A simple route to prepare (100) preferred orientation indium tin oxide film onto polyimide substrate by direct current pulsed magnetron sputtering(排名:4/10)
38.Promoting ITO film strain gauge factor by (1 0 0) preferred orientation(排名:7/8)
39.The resistance temperature stability of ITO film strain gauge: Detailed investigate the influence mechanism of (100) preferred orientation of ITO film(排名:3/10)
40.Preparation of ZnO:Al,F powder and its electrical property(排名:4/6)
41.One-pot synthesis and gas sensitivity of SnO2 nanoparticles prepared using two Sn salts of SnCl4-5H2O and SnCl2-2H2O(排名:5/9)
42.Study on the growth mechanism of tin-doped indium oxide films deposited by direct current pulse magnetron sputtering (排名:1/3)
43.Preparation and properties of surface textured ZnO_Al films by direct current pulse magnetron sputtering(排名:2/4)
44.Preparation, structural and sintering properties of AZO nanoparticles by sol-gel combustion method(排名:3/8)
45.Flat-elongated-granulated complex morphology with (002) preferred orientation and high sinter activity of AZO nanoparticles by ethanol-assisted coprecipitation(排名:3/10)
46.Preparation and characterization of rutile TiO2 nanoparticles by HClwater volatilization assisted precipitation method(排名:2/8)
47.Weak-light-driven Ag-TiO2 photocatalyst and bactericide prepared by coprecipitation with effective Ag doping and deposition(排名:3/10)
48.Synthesis and photocatalytic performance of TiO2 spheres on ZnO arrays(排名:2/9)
49.Improving the performance of perovskite solar cells via TiO2 electron transport layer prepared by direct(排名:1/3)
50.Cluster-model-based design and synthesis for rutile-type Ti-Sn-Nb-Ta-Me-O(排名:4/9)
51.Amorphous TiO2 film with fiber like structure An ideal candidate for ETL of perovskite solar cells(排名:1/4)
52.Composition-constrained rocksalt structure high entropy oxides with nonequimolar cations Design and synthesis based on clusterplus-glue-atom model(排名:4/9)
53.Synthesis and optoelectrical properties of Ti8Sn8Nb8Ta8Me16O96 rutile structure high entropy
oxides(排名:2/9)
54.Weak-visible-light-driven Fe doped TiO2 photocatalyst prepared by coprecipitation method and degradation of methyl orange(排名:1/9)
55.A simple route to prepare SiO2 insulation film by atmospheric pressure plasma jet(排名:1/8)
56.The preliminary exploration of composition origin of solid solution alloys used in thermocouple by cluster-plus-glue-atommodel(排名:1/10)
57.Preparation, structural and photocatalytic activity of SnFe co-doped TiO2 nanoparticles by sol-gel method(排名:3/9)
58.The preliminary exploration on change mechanism of Seebeck coefficient for NiCr/NiSi thin film thermocouple with different thickness(排名:1/7)
59.The influence of N-based group doping on surface potential of TiO2 electron transport layer prepared by Sol-gel and sputtering techniques(排名:2/3)
60.Investigating PCE of PSCs with N-based groups doped TiO2 ETLs prepared by solgel and sputtering
technologies(排名:1/3)
61.Comparison of phase structure and optoelectrical properties of Mg19.2Co19.2Ni19.2Cu19.2Zn19
.2Ti96O288 and Mg28Co17Ni19Cu16Zn16Ti96O288 high entropy oxides(排名:3/9)
62.Phase evolution in preparing ZnSnO3 powders by precipitation method(排名:5/9)
63.Influence
of substrate temperature
on surface textured
ZnOAl films etched with NaOH
solution(排名:3/4)
64.O2/Ar比例對(duì)直流脈沖磁控濺射制備TiO2薄膜光催化性能的影響(排名:2/3)
65.沉積參數(shù)對(duì)SiNx薄膜結(jié)構(gòu)及阻透性能的影響(排名:2/5)
66.Influences
of Working Pressure on
Properties for TiO2 Films
Deposited by DC Pulse
Magnetron Sputtering(排名:2/4)
67.Influence
of O2 Flux on Compositions
and Properties of ITO
Films Deposited at Room
Temperature by Direct-Current Pulse Magnetron Sputtering (排名:1/4)
68.O2流量對(duì)磁控濺射N摻雜TiO2薄膜成分及晶體結(jié)構(gòu)的影響(排名:2/4)
69.基于團(tuán)簇加連接原子模型定量分析陽(yáng)離子摻雜ZnO電子載流子濃度(排名:1/3)
70.直流脈沖磁控濺射制備ITO薄膜及其光電性能(排名:2/3)
71.高熵氧化物的研究進(jìn)展(排名:4/6)
72.ABO3型鈣鈦礦光催化劑制備、改性及應(yīng)用研究進(jìn)展(排名:1/6)
73.SnO2納米粒子制備及其應(yīng)用研究進(jìn)展(排名:5/6)
74.不同形貌 TiO2納米粒子制備及應(yīng)用研究現(xiàn)狀(排名:4/6)
|
||
獲獎(jiǎng)及個(gè)人榮譽(yù)
|
||
2017年入選遼寧省百千萬(wàn)人才工程“萬(wàn)層次”人選
|
||
社會(huì)兼職情況
|
||
|
||
指導(dǎo)研究生情況
|
||
已指導(dǎo)畢業(yè)研究生人數(shù)
|
碩士:
|
|
正在指導(dǎo)研究生人數(shù)
|
碩士:
|
|
所指導(dǎo)研究生獲獎(jiǎng)情況
|
|
|
承擔(dān)研究生課程名稱
|
《材料熱力學(xué)與動(dòng)力學(xué)》
|