共找到19條詞條名為劉德勝的結果 展開
劉德勝
山東大學物理學院教授
劉德勝[濟寧學院副院長、山東大學物理學院教授]
1998. 7. ~ 2001.7. 山東大學物理系,博士研究生,博士學位,論文題目:“准一維共聚物電子結構及性質研究“
1995. 9. ~ 1998.7. 山東大學物理系,碩士研究生,獲理學碩士學位;
1981. 9. ~ 1985.7. 曲阜師範大學物理系,本科,獲理學學士學位;
1985.7-2001.6 濟寧師專
1992.9-2000.5 濟寧學院物理系講師
2000.6-2002.9 濟寧學院物理系副教授
2001.6-至今 山東大學物理與微電子學院
2002.9-至今 山東大學物理學院教授
2021年11月14日,山東省人民政府決定免去:劉德勝的濟寧學院副院長職務。
主要從事凝聚態物理理論的研究工作,並在低維體系,特別是准一維導電高分子聚合物的分子結構及電光特性的研究,首次提出了共聚物(copolymer)各嵌段間的界面耦合的強弱為“能壘”的高低的物理圖景,對各種嵌段共聚物所組成的有機量子阱與超晶格的電子結構及光學性質進行了系統地研究,取得了一些突破,目前的主要研究方向為分子電子學和DNA分子導電性質研究。目前承擔了973子課題1項,國家重點實驗室自主項目子課題1項,國家自然科學基金1項和山東省自然科學基金1項,山東省教育廳優秀青年教師資助計劃和山東省第五批中青年學術骨幹各1項;作為主要成員,參加了國家自然科學基金重大項目2項,國家自然科學基金3項,優秀國家重點實驗室基金1項和教育部骨幹教師資助計劃項目1項。
1. 2009.1-2013.8科技部重大科學研究計劃( 973 )項目( 2009CB929204 ):
“磁性微結構電子態的量子調控理論研究”
2. 2009.1-2011.12山東省教育廳研究生教育創新計劃( SDYY08004 ):
“凝聚態物理動態教學研究”
3. 2009.1-2011.12教育部博士點基金(
“分子有機/無機異質結中電荷輸運與調控研究”
4. 2008.1-2012.12國家重點實驗室自主課題( ZZ-ZD-2008-06 ):
“新型功能晶體生長及其性能微觀動力學研究”
5. 2006.1-2008.12國家自然科學基金 (負責人)( No. 10574082 ):
“苯基分子異質結構器件中界面勢、能態、載流子及其輸運性質研究”
6. 2006.1-2008.12山東省自然科學基金 (負責人)( No.Z2005A01 ):
“DNA電子結構及電荷輸運性質研究”
7. 2001.12-2004.12山東省自然科學基金 (負責人)( Y2001A05 ):
“共聚物有機量子阱結構性質研究”
8. 2001.8 –2003.8山東省教育廳第三批優秀青年教師資助計劃 (負責人)( J01C53 ):
“共聚物的電子與光學性質研究”
9. 2001.12 –2003.12山東省高等學校第五批中青年學術骨幹資助計劃 (負責人)
10. 1999.1-2001.12山東省自然科學基金 (第3位) ( No.Y98G12108 ):
“柔性襯底有機LED器件研製及性能研究”
11. 2001.10-2003.10國家自然科學基金重大研究計劃 (第2位) ( No.90103034 ):
“有機固體物性的理論研究”
12. 99.1-01.12國家自然科學基金項目 (第3位) ( No.59871024 ):
“尺度和維度對金屬鹵化物電荷密度波材料性能的影響”
13. 2000.1 – 2002.12國家自然科學基金項目 (第3位)( No. 10074040 ):
“高分子共聚物結構和性質研究”
14. 2000.12 –2003.12教育部高等學校骨幹教師資助計劃 (第3位)
15. 2002-2003山東大學學科預研基金 ( No. 11160051310076 ):
“有機量子阱與超晶格結構”
16. 2003-2004山東大學青年基金 ( No. 11160053187006 ):
“分子器件的結構及電特性研究”
17. 2004.1-2006.12優秀國家重點實驗室獎勵基金 ( No.50323006 ):
18.“高載流子遷移率有機-金屬配合物和有機-無機複合半導體材料的研製”
19.基於籠狀分子的納米藥物載體的動力學特性模擬程序包的勢函數庫開發, 2020/01/01-2023/12/30
20.基於緊束縛方法考慮自旋軌道耦合效應的二維錫材料與器件自旋分辯輸運特性模擬程序包的開發, 2019/09/27-2020/06/30
21.有機半導體中光載流子產生機制研究, 2009/12/01-2012/12/31
22.硅烯/磷化鋁納米帶異質結緊束縛計算程序開發, 2018/01/01-2019/06/30
23.有機分子場效應器件的電輸運性質及其應用基礎研究, 2013/10/28-2016/12/31
24.有機單分子器件串並聯電路量子干涉效應研究, 2013/08/15-2017/12/31
物理學類其他專業
分子電子學與分子自旋電子學
molecular electronics and molecular spin electronics.
[18-03] X. T. Li, H. M. Li, X. Zuo, L. Kang, D. M. Li, B. Cui. D. S. Liu*, J. Phys. Chem. C 122 (2018), 21763-21769
Chemical functionalized penta-stanene monolayers for light harvesting with high carrier mobility
[18-02] M. Wang, X. T. Li, Y. Li, X. Zuo, D. M. Li, B. Cui, D. S. Liu*, Org. Electron. 56 (2018), 63-68
Impact of interface types on spin transport in heterostructures of graphene/hexagonal boron-nitride nanoribbons
[18-01] D. Q. Zou, W. K. Zhao, B. Cui, D. M. Li, D. S. Liu*, Phys. Chem. Chem. Phys. 20 (2018), 2048-2056
Adsorption of gas molecules on manganese phthalocyanine molecular devices and its possibility of gas sensor
[17-07] B. Cui, B. Huang, C. Li, X. M. Zhang, K. H. Jin, L. Z. Zhang, W. Jiang, D. S. Liu, F. Liu, Phys. Rev. B 96 (2017), 085134, 1-6
Creation of half-metallic f -orbital Dirac fermion with superlight elements in orbital-designed molecular lattice
[17-06] J. F. Zhao, B. Cui, C. F. Fang, D. Q. Zou, X. T. Li, D. S. Liu*, Org. Electron. 49 (2017), 333-339
Spin transport properties in silicene-based heterojunctions with different edge hydrogenation
[17-05] L. N. Shao, J. F. Zhao, B. Cui, C. F. Fang, D. S. Liu*, Chem. Phys. Lett. 678 (2017), 216-221
A first-principles study of overcrowded alkene-based light-driven rotary molecular motor as a possible optical molecular
[17-04] X. T. Li, D. Q. Zou, B. Cui, C. F. Fang, M. W. Zhao, D. M. Li, D. S. Liu*, RSC Adv. 7 (2017), 25244 - 25252
Edge hydrogenation-induced spin-filtering and negative differential resistance effects in zigzag silicene nanoribbons with line defects
[17-03] J. F. Zhao, C. F. Fang, B. Cui, D. Q. Zou, W. K. Zhao, X. T. Li, D. M. Li, D. S. Liu*, Org. Electron. 49 (2017), 187-193
Spin-filter silicene devices induced by asymmetric electrodes
[17-02] X. H. Jiang, D. Q. Zou, B. Cui, C. F. Fang, W. Liu, X. M. Kong, D. S. Liu*, RSC Adv. 7 (2017), 7368-7374
Design of boron vacancy enhanced spin filtering graphene/BN zigzag nanoribbon heterojunctions
[17-01] D. Q. Zou, W. K. Zhao, C. F. Fang, B.Cui, D. S. Liu*, Chem. Phys. Lett. 670 (2017), 52-57
Effect of vertical-strain-induced symmetry breaking on transport properties of zigzag graphene nanoribbons
[16-05] X. H. Jiang, C. F. Fang, D. Q. Zou, W. K. Zhao, W. Liu, X. M. Kong and D. S. Liu*, RSC Adv. 6 (2016), 56429-56734
Vacancy-induced spin polarization in graphene and B–N nanoribbon heterojunctions
[16-04] P. Zhao, D. S. Liu, G. Chen, Org. Electron. 36 (2014), 160-165
Spin-polarized transport properties of Fe-oligoporphyrin dimer-based molecular device
[16-03] D. Q. Zou, W. K. Zhao, C. F. Fang, B. Cui, D. S. Liu*, Phys. Chem. Chem. Phys. 18 (2016), 11513-11519
The electronic transport properties of zigzag silicene nanoribbon slices with edge hydrogenation and oxidation
[16-02] H. Wang, Y. Li, D. M. Li, B. Cui and D. S. Liu*, Phys. Chem. Chem. Phys. 18 (2016), 503-509
Polaron spin filtering in an organic ferromagnetic polymer: a dynamics simulation
[16-01] Q. H. Wu, P. Zhao, D. S. Liu, G. Chen, RSC Adv. 6 (2016), 16634-16639
Spin-dependent transport properties in a pyrene–graphene nanoribbon device
[15-07] D. Q. Zou, B. Cui, C. F. Fang, W. K. Zhao, X. R. Kong, D. M. Li, M. W. Zhao,D. S. Liu*, Org. Electron. 27 (2015), 212-220
Role of edge dehydrogenation in magnetization and spin transport of zigzag graphene nanoribbons with line defects
[15-06] S. Yin, K. Gao, S. J. Xie, D. S. Liu, Org. Electron. 25 (2014), 329-334
The temperature dependence of the spin relaxation of coupled polaron pairs in organic semiconductors
[15-05] X. R. Kong, B. Cui, W. K. Zhao, J. F. Zhao, D. M. Li, D. S. Liu*, RSC Adv. 5 (2015), 70682-70688
A first principle study on the spin transport properties in the heterojunctions based on zigzag-edged graphene nanoribbons and graphitic carbon nitrides nanoribbons
[15-04] Q. H. Wu, P. Zhao, Y. Su, D. S. Liu, G. Chen, RSC Adv. 5 (2015), 20699-20703 Thermal spin transport of a nitroxide radical-based molecule
[15-03] D. Q. Zou, W. K. Zhao, B. Cui, J. F. Zhao, X. R. Kong, D. M. Li, D. S. Liu*, Phys. Chem. Chem. Phys. 17 (2015), 11292-11300
Spin transport properties in lower n-acene – graphene nanojunctions
[15-02] H. Wang, X. R. Kong, Y. Li, B. Cui, D. M. Li, K. Gao, Y. Li, D. S. Liu*, Org. Electron. 23 (2015), 57-63
Simulations of polaron spin inversion in an organic semiconductor: Comparison of two mechanisms
[15-01] W. K. Zhao, B. Cui, J. F. Zhao, G. M. Ji, X. R. Kong, X. H. Jiang, D. Q. Zou, D. M. Li, J. Cheng, D. S. Liu*, Phys. Chem. Chem. Phys. 17 (2015), 3115-3122
Rectification inversion in the oxygen substitution graphyne-graphene-based heterojunctions
[14-12] Q. H. Wu, P. Zhao, D. S. Liu, Phys. Lett. A 378 (2014), 561-564
Gate-controlled low-bias rectifying behaviors in BDC60 molecule
[14-11] Q. H. Wu, P. Zhao, D. S. Liu, S. J. Li, G. Chen, Org. Electron. 15 (2014), 3615-3623
Rectifying, giant magnetoresistance, spin-filtering, newgative differential resistance, and switching effects in single-molecule magnet Mn(dmit)2-based molecular device with grapheme nanoribbon electrodes
[14-10] Q. H. Wu, P. Zhao, H. Y. Liu, D. S. Liu, G. Chen, Chem. Phys. Lett. 605-606 (2014), 62-66
Odd–even dependence of rectifying behavior in carbon chains modified diphenyl–dimethyl molecule
[14-09] Q. H. Wu, P. Zhao, D. S. Liu, Chin. Phys. Lett. 31 (2014), 107302, 1-4
Perfect Spin-Filtering in 4H-TAHDI-Based Molecular Devices: the Effect of N-Substitution
[14-08] X. R. Kong, B. Cui, W. K. Zhao, J. F. Zhao, D. M. Li, D. S. Liu*, Org. Electron. 15 (2014), 3674-3680
Spin negative differential resistance and high spin filtering behavior realized by devices based on graphene nanoribbons and graphitic carbon nitrides
[14-07] J. F. Zhao, W. K. Zhao, B. Cui, C. F. Fang, Y. Q. Xu, X. R. Kong, D. M. Li, D. S. Liu*, RSC Adv. 4 (2014), 40941-40950
Electronic transport properties of a dithienylethene-based polymer with different metallic contacts
[14-06] P. Zhao, Q. H. Wu, H. Y. Liu, D. S. Liu, G. Chen, J. Mater. Chem. C 2 (2014), 6648-6654
A first-principles study of the spin transport properties of a 4H-TAHDI-based multifunctional spintronic device with graphene nanoribbon electrodes
[14-05] B. Cui, Y. Li, X. H. Jiang, W. K. Zhao, H. Wang, J. F. Zhao, H. Zhao, D. M. Li, P. Zhao, D. S. Liu*, J. Appl. Phys. 116 (2014), 073701, 1-6
Effect of geometrical torsion on the rectification properties of diblock conjugated molecular diodes
[14-04] G. M. Ji, B. Cui, Y. Q. Xu, C. F. Fang, W. K. Zhao, D. M. Li, D. S. Liu*, RSC Adv. 4 (2014), 16537-16544
Enhanced rectifying performance by asymmetrical gate voltage for BDC20 molecular devices
[14-03] P. Zhao, Q. H. Wu, D. S. Liu, G. Chen, J. Chem. Phys. 140 (2014), 044311, 1-6
Spin-filtering, giant magnetoresistance, rectifying and negative differential resistance effects in planar four-coordinate Fe complex with graphene nanoribbon electrodes
[14-02] B. Cui, Y. Q. Xu, G. M. Ji, H. Wang, W. K Zhao, Y. X. Zhai, D. M. Li, D. S. Liu*, Org. Electron. 15 (2014), 484-490
A single-molecule diode with significant rectification and negative differential resistance behavior
[14-01] W. K. Zhao, G. M. Ji, D. S. Liu*, Phys. Lett. A 378 (2014), 446-452
Contact position and width effect of graphene electrode on the electronic transport properties of Dehydrobenzoannulenne molecule under bias
[13-05] Y. Q. Xu, B. Cui, G. M. Ji, D. M. Li, D. S. Liu*, Phys. Chem. Chem. Phys. 15 (2013), 832-836
Effect of the orientation of nitro group on the electronic transport properties in single molecular field-effect transistors
[13-04] P. Zhao, D. S. Liu, S. J. Li, G. Chen, Phys. Lett. A 377 (2013), 1134-1138
Modulation of rectification and negative differential resistance in graphene nanoribbon by nitrogen doping
[13-03] Q. H. Wu, P. Zhao, D. S. Liu, Chin. Phys. Lett. 30 (2013), 107304, 1-4
Low Bias Negative Differential Resistance Behavior in Carbon/Boron Nitride Nanotube Heterostructures
[13-02] P. Zhao, D. S. Liu, G. Chen, J. Chem. Phys. 139 (2013), 084318, 1-6
Energy alignment induced large rectifying behavior in endoheral fullerene dimmers
[13-01] P. Zhao, D. S. Liu, H. Y. Liu, S. J. Li, G. Chen, Org. Electron. 14 (2013), 1109-1115
Low bias negative differential resistance in C60 dimer modulated by gate voltage
[12-07] H. Ren, W. Liang, P. Zhao, D. S. Liu, Chin. Phys. Lett. 29 (2012), 077301, 1-3
Low Bias Negative Differential Resistance with Large Peak-to-Valley Ratio in a BDC60 Junction
[12-06] G. M. Ji, Y. Q. Xu, B. Cui, C. F. Fang, X. R. Kong, D. M. Li, D. S. Liu*, RSC Adv. 2 (2012), 11349-11353
Rectifying behaviors of Au/(C20)2/Au molecular device induced by the different positions of gate voltage
[12-05] X. J. Yuan, D. M. Li, S. Yin, K. Gao, B. Cui, D. S. Liu*, Org. Electron. 13 (2012), 2094-2103
Effects of disorder on charge transport in semiconducting polymers
[12-04] P. Zhao, D. S. Liu, Y. Zhang, Y. Su, H. Y. Liu, S. J. Li, and G. Chen, J. Phys. Chem. C 116 (2012), 7968−7974
Large low bias negative differential resistance in an endohedral Li@C60 dimer junction
[12-03] Y. Q. Xu, C. F. Fang, B. Cui, G. M. Ji, D. S. Liu*, Phys. Chem. Chem. Phys. 14 (2012), 668–674
Electrostatic current switching and negative differential resistance behaviors observed in a molecular device based on carbon nanotubes
[12-02] C. F. Fang, B. Cui, Y. Q Xu, G. M. Ji, D. M Li, D. S. Liu*, Appl. Phys. Lett. 100 (2012), 023303, 1-4
Effect of different electrodes on Fano resonance in molecular devices
[12-01] G. M. Ji, D. M, Li, C. F. Fang, Y. Q. Xu, Y. X. Zhai, B. Cui, D. S. Liu*, Phys. Lett. A 376 (2012), 773-778
Effect of contact interface configuration on electronic transport in (C20)2-based molecular junctions
[11-12] C. J. Xia, D. S. Liu, Y. T. Zhang, Chin. Phys. Lett. 28 (2011), 093102, 1-4
Electronic transport properties of a naphthopyran-based optical molecular switch: an ab initio study
[11-11] W. Liu, J. Cheng, M. H. Zhang, D. S. Liu*, Chin. Phys. Lett. 28 (2011), 077103, 1- 4
Zener tunneling in one-dimensional organic semiconductors at finite temperature
[11-10] P. Zhao, D. S. Liu, Y. Zhang, Y. Su, S. J. Li, G. Chen, Phys. Lett. A 375 (2011), 2639-2643
Negative differential resistance in the unsymmetrical C121-based molecular junction
[11-09] P. Zhao, D. S. Liu, Y. Zhang, P. J. Wang, Z. Zhang, Chin. Phys. Lett. 28 (2011), 047301, 1- 4
Rectifying properties of a nitrogen/boron-doped capped-carbon-nanotube-based molecular junction
[11-08] K. Gao, S. J Xie, S. Yin, D. S Liu, Org. Electron. 12 (2011), 1010–1016
Study on charge-transfer state in a donor–acceptor polymer heterojunction
[11-07] G. M. Ji, Y. X. Zhai, C. F. Fang, Y. Q. Xu, B. Cui, D. S. Liu*, Phys. Lett. A 375 (2011), 1602-1607
The electronic transport properties in C60 molecular devices with different contact distances
[11-06] B. Cui, C. F. Fang, Y. X. Zhai, S. Yin, K. Gao, D. S. Liu*, Appl. Phys. Lett. 98 (2011), 133101, 1-3
The inversely proportional relationship in the asymmetric transport of a diblock co-oligomer junction
[11-05] Y. Q. Xu, C. F. Fang, G. M. Ji, B. Cui, Y. X. Zhai, D. S. Liu*, Appl. Phys. Lett. 99 (2011), 043304, 1-3
Gated electronic current modulation and designs of logic gates with single molecular field effect transistors
[11-04] X. J. Yuan, X. F. Dong, D. M. Li, D. S. Liu*, J. Chem. Phys.134 (2011), 244901, 1-9
Effects of disordered interchain interaction on polaron dynamics in semiconducting polymers
[11-03] P. Zhao, D.S. Liu, P. J. Wang, Z. Zhang, C. F. Fang, G. M. Ji, Physica B 406 (2011), 895-898
First-principles study of the electronic transport properties of the anthraquinone-based molecular switch
[11-02]Z. Sun, D. S. Liu*, Sven Stafström, Z. An, J. Chem. Phys. 134 (2011), 044906, 1-5
Scattering process between polaron and exciton in conjugated polymers
[11-01] D. M. Li, Y. Li, H. H. Li, D. S. Liu*, Current Appl. Phys. 11 (2011), 241-246
Dynamics of oppositely charged carriers in a metal/coupled poly(p-phenylene vinylene) chains/metal structure
[10-05] P. Zhao, D. S. Liu*, Chin. Sci. Bull. 55 (2010), 4104-4107
Electron transport properties of boron-doped capped-carbon-nanotube-based molecular junctions
[10-04] C. F. Fang, P. Zhao, B. Cui, D. S. Liu*, S. J. Xie, Phys. Lett. A 374 (2010), 4465-4470
Current Rectification in single molecule C59N : Effect of molecular polarity induced dipole moment
[10-03] C. J. Xia, C. F. Fang, P. Zhao, D. S. Liu*, Current Appl. Phys. 10 (2010), 848-852
First-principles study of the field-induced current-switch by dithiocarboxylate anchoring group in molecular junction
[10-02] Z. Sun, Y. Li, K. Gao, D. S. Liu*, Z. An, S. J. Xie, Org. Electron. 11 (2010), 279-284
Dynamical study of polaron-bipolaron scattering in conjugated polymers
[10-01] P. Zhao, P. J. Wang, Z. Zhang, D. S. Liu*, Phys. Lett. A 374 (2010), 1167-1171
Negative differential resistance in a carbon nanotube-based molecular junction
[09-05]K. Gao, S. J. Xie, S. Yin, Y. Li, D. S. Liu, X. Zhao, Org. Electron. 10 (2009), 1601-1605
A theoretical study on photoexcitations in poly(p-phenylene vinylene)
[09-04] P. Zhao, C. F. Fang, Y. M. Wang, Y. X. Zhai, D. S. Liu*, Current . Appl. Phys. 9 (2008), 1213-1216
First-principles study of the switching characteristics of the 15,16-dinitrile DDP/CPD-based optical molecular switch with carbon nanotube electrodes
[09-03] P. Zhao, P. J. Wang, Z. Zhang, C. F. Fang, Y. M. Wang, Y. X. Zhai, D. S. Liu*, Solid State Communications 149 (2009), 928-931
Electronic transport properties of DTE-based molecular switch with SWCNT electrodes: effect of chiraty
[09-02] Z. Sun, D. S. Liu*, Z. An, S. J. Xie, Phys. Rev. B 79 (2009), 201310 (R), 1-4
Scattering processes between bipolaron and exciton in conjugated polymers
[09-01] 孫震,安忠,李元,劉文,劉德勝,解士傑,《物理學報》 58 (2009), 4150-4155
高聚物中極化子和三重態激子的碰撞過程研究
[08-16] Z. Qu, D. W. Knag, Y. Li, W. Liu, D. S. Liu*, S. J. Xie, Phys. Lett. A 372 (2008), 6013-6018
Effect of helix angles on polaron motion in poly-DNA
[08-15] Y. Li, D. M Li, K. Gao, X. J. Liu, W. Liu, D. S. Liu*, S. J. Xie, Phys. Rev. B 78 (2008), 014304, 1-13
Interchain polaron motion and geminate combination in donor-accept copolymers: effects of level offset and interfcial coupling
[08-14] P. Zhao, D. S. Liu*, S. J. Xie, Phys. Lett. A 372 (2008), 5811-5815
Ab initio investigation of the I-V characteristics of the phenoxynaphthacenequinone-based optical molecular switch
[08-13] H. H. Li,D. M. Li, Y. Li, K. Gao, D. S. Liu, S. J. Xie, Chin. Phys. Lett. 25 (2008), 3009-3012
Charge injection and transport in metal/ polymer chains /metal sandwich structure
[08-12] 李海宏,李冬梅,劉文,李元,劉曉靜,劉德勝,解士傑, 《物理學報》 57 (2008), 1117-1122
金屬/摻雜聚合物/金屬結構中載流子的注入與輸運
[08-11] 趙朋,房常峰,夏蔡娟,王一鳴,高琨,劉德勝,解士傑, 《物理學報》 57 (2008), 3747-3752
F取代對二芳烯分子光開關性能的影響
[08-10] D. M. Li, X. J. Liu, Y. Li, H. H. Li, G. C. Hu, K. Gao, D. S. Liu*, S. J. Xie, Chin. Phys. B 17 (2008), 3067-3076
Dynamical study on charge injection and transport in a metal/polythiophene/metal structure
[08-09] 李冬梅,李海宏,李元,劉德勝, 《物理學報》 57 (2008), 5217-5225
載流子在金屬/聚對苯乙炔/金屬結構中注入及輸運的動力學研究
[08-08] 夏蔡娟, 房常峰, 胡貴超, 李冬梅, 劉德勝, 解士傑, 趙明文, 《物理學報》 57 (2008), 3148-3154
官能團對分子器件電輸運特性的影響
[08-07] 孟憲蘭, 高緒團,渠朕,康大偉,劉德勝,解士傑, 《物理學報》 57 (2008), 5316-5322
界面耦合對DNA分子的電荷輸運性質的影響
[08-06] P. Zhao, C. F. Fanga, C. J. Xia, D. S. Liu*, S. J. Xie, Chem. Phys. Lett. 453 (2008), 62-67
15, 16-dinitrile DDP/CPD as a Possible Solid-State Optical Molecular Switch
[08-05] W. Liu, Y. Li, Z. Sun, D. S. Liu*, S. J. Xie, Phys. Lett. A 372 (2008), 4315-4318
Zener tunneling in one-dimensional organic semiconductors
[08-04] K. Gao, X. J. Liu, D. S. Liu, S. J. Xie, Phys. Lett. A 372 (2008), 2490-2495
Exciton formation with interchain coupling in organic polymers
[08-03] C. J. Xia, C. F. Fang,G. C. Hu, P. Zao,Y. M. Wang, S. J.Xie, D. S. Liu*, Chin. Phys. Lett. 25 (2008), 1840-1843
Effects of contact atomic structure on electron transport in molecular junctions
[08-02] P. Zhao, C. F. Fang, C. J. Xia, Y. M. Wang, D. S. Liu*, S. J. Xie, Appl. Phys. Lett. 93 (2008), 013113, 1-3
A possible anthracene-based optical molecular switch driven by a reversible photodimerization reaction
[08-01] J. Y. Fu, D. S. Liu, S. J. Xie, Physica E 40 (2008), 915-919
Polarons and bipolarons in polythiophene in the presence of magnetic field
[07-04] K. Gao, X. J. Liu, D. S. Liu, S. J. Xie, Phys. Rev. B 75 (2007), 205412, 1-6
Charge carrier generation through reexcitation of an exciton in poly(p-phenylene vinylene) molecules
[07-03] 夏蔡娟, 房常峰, 胡貴超, 李冬梅, 劉德勝, 解士傑,《物理學報》 56 (2007), 4884-4890
分子的位置取向對分子器件電輸運特性的影響
[07-02] Y. N. Ma, Y. B. Zhang, J. F. Ren, D. S. Liu, S. J. Xie, Chin. Phys. Lett. 24 (2007), 1697-1700
Effect of electric field on spin polarized current in ferromagnetic/organic semiconductor system
[07-01] D. C. Zhang, D. S. Liu, L. M. Mei, S. J. Xie, X. Sun, Chin. Phys. Lett. 24 (2007), 698-701
Re-excited states in conjugated polymers
[06-08] Y. Li, X. J. Liu, J. Y. Fu, D. S. Liu*, S. J. Xie, L. M. Mei, Phys. Rev. B 74 (2006), 184303, 1-9
Bloch oscillations in a one-dimensional organic lattice
[06-07] 李元,胡貴超,夏蔡娟,劉德勝,解士傑,中國科學 36 (2006), 496-504
聚二乙炔(polydiacetylene)的基態及極化子和雙極化子激發態
[06-06] X. J. Liu, K. Gao, D. S. Liu, S. J. Xie, Journal of Physics: Conference Series 29 (2006), 87-90
Polaron dynamics in impurity-doped conjugated polymers
[06-05] X. T. Gao, X. Fu, D. S. Liu, S. J. Xie, Journal of Physics: Conference Series 29 (2006), 115-119
Electric conductance of DNA molecules with adjustable number itinerant electrons
[06-04] K. Gao, X. J. Liu, D. S. Liu, S. J. Xie, Journal of Physics: Conference Series 29 (2006), 45-49
Reverse polarization in charged p-conjugated oligomers by single-optical excitation
[06-03] J. Y. Fu, J. F. Ren, D. S. Liu, L. M. Mei, S. J. Xie, Synth. Met. 156 (2006), 370-374
Interlayer exchange coupling in one-dimensional CMR manganite/organic semiconductor/CMR manganite system
[06-02] J. Y. Fu, J. F. Ren, D. S. Liu, S. J. Xie, Thin Solid Films, 503 (2006), 196-200
Polarons and bipolarons in polythiophene contacted with half-metallic ferromagnetic manganite
[06-01] 高緒團,傅雪,宋駿,劉德勝,解士傑,《物理學報》 55 (2006), 952-956
位置漲落對DNA分子電子結構的影響
[05-06] K. Gao, X. J. Liu, D. S. Liu, S. J. Xie, Acta Physica Sinica, 54 (2005), 5324-5328
Inverse polarization of the single excited state of polaron
[05-05] K. Gao, X. J. Liu, D. S. Liu, S. J. Xie, J. Chem. Phys. 123 (2005), 234702-1~234702-5
Reverse polarization in charged p-conjugated oligomers
[05-04] J. Song, D. C. Zhang, D. S. Liu, L. M. Mei, S. J. Xie, Synth. Met.155 (2005), 607-610
Density of states of DNA molecules with varied itinerant electrons
[05-03] J. F. Ren, J. Y. Fu, D. S. Liu, L. M. Mei, S. J. Xie, J. Appl. Phys. 98 (2005), 074503, 1-5
Spin-polarized current in a ferromagnetic/organic system
[05-02] J. F. Ren, J. Y. Fu, D. S. Liu, L. M. Mei, S. J. Xie, J. Phys.:Condens. Matter 17 (2005), 2341-2347
Difussion theory of spin injection into organic polymers
[05-01] D. S. Liu, D. C. Zhang, S. J. Xie, Liang-Mo Mei, Chin. Phys. Lett. 22 (2005), 178-181
Polaronic tunneling in organic triblock copolymers
[04-06] J. Y. Fu, J. F. Ren, D. S. Liu, S. J. Xie, Acta Physica Sinica 53 (2004), 1989
Spin polarization study on one-dimensional ferromagnetic metal/conjugated polymers
[04-05] J. F. Ren, J. Y. Fu, D. S. Liu, S. J. Xie, Acta Physica Sinica 53 (2004), 3814
Diffusion theory of spin injection into organic polymers
[04-04] D. C. Zhang, J. Cheng, D. S. Liu, S. J. Xie, Acta Physica Sinica 53 (2004), 2305
Theoretical study on dispersion relation of one-dimensional copolymers
[04-03] 張大成,程傑,劉德勝,解士傑,《物理學報》 53 (2004), 2305-2309
一維共聚物鏈的色散關係研究
[04-02] 付吉永,任俊峰,劉德勝,解士傑,《物理學報》 53 (2004), 1989-1905
一維鐵磁/有機共軛聚合物的自旋極化研究
[04-01] 任俊峰,付吉永,劉德勝,解士傑,《物理學報》 53 (2004), 3814-3817
自旋注入有機物的擴散理論
[03-04] D. S. Liu, L. X. Wang, S. J. Xie, S. H. Han, L. M. Mei, Optical Material 23 (2003), 479 - 483
Polaron tunneling in copolymers under external electric fields
[03-03] L. X. Wang, D. S. Liu, S. J. Xie, S. H. Han, L. M. Mei, Optical Material 23 (2003), 485 - 488
Energy evolution of bipolaron in phenylene ring polymer under high electric field
[03-02] 張大成,王鹿霞,劉德勝,韓聖浩,解士傑,《物理學報》 52 (2003), 3191-3196
擾動對一維局域模的影響
[03-01] 王鹿霞,張大成,劉德勝,韓聖浩,解士傑,《物理學報》 52 (2003), 2547-2552
基態非簡併聚合物中的極化子和雙極化子動力學
[02-04] D. S. Liu, L. X. Wang, S. J. Xie, S. H. Han, L. M. Mei, Synth. Met. 135 (2002), 497-498
Electronic structures of triblock copolymers
[02-03] L. X. Wang, D. S. Liu, S. J. Xie, S. H. Han, L. M. Mei, Synth. Met. 135 (2002), 501-502
Energy evolution of polaron in poly(p-phenylene) in the presence of high electric field
[02-02] L. X. Wang, D. S. Liu, J. H. Wei, S. J. Xie, L. M. Wei, J. Chem. Phys. 116 (2002), 6760-6763
Effect of atomic disorder or chain length on the stability of photoinduced polarization inversion
[02-01] 王鹿霞,劉德勝,解士傑,《物理學報》 51 (2002), 362-366
原子無序起伏對反向極化的影響
[00-01] 劉德勝,解士傑,韓聖浩,《物理學報》 49 (2000), 1556
准一維共聚物的電子結構研究
[99-02] 劉德勝,趙俊卿,魏建華,解士傑,《物理學報》 48 (1999), 1327
聚對苯乙炔(PPV)的基態、極化子和雙極化子激發態及其穩定性
[99-01] J. H. Wei, D. S. Liu, S. J. Xie, L. M. Mei, J. Phys.: Condensed Matter. 11 (1999), 4647
Sallow energy levels in quasi-one-dimensional PtX compounds
[98-01] J. H. Wei, D. S. Liu, S. J. Xie, L. M. Mei, Chin. Phys. Lett. 15 (1998), 737
Quantum charge transfer in quasi-one-dimensional mixed halide compounds
[97-01] S. J. Xie, J. H. Wei, D. S. Liu, L. M. Mei and D. L. Lin, Phys. Rev. B 56 (1997), 13162
Interchain coupling and localized vibration modes in conjugated polymers of finite length
李鶴鳴. High mobility and enhanced photoelectric performance of two-dimensional ternary compounds NaCuX (X = S, Se, and Te). Phys. Chem. Chem. Phys。, 23, 2475, 2021.
姜新新. Spin-polarized current in wide bandgap hexagonal boron nitrides containing line defects. 計算材料科學, 183, 2021.
韓立. Rational design of [e]-fusion induced high-performance DHP/CPD based photoswitches. Phys. Chem. Chem. Phys。, 22, 26255, 2021.
房常峰. Rational Design of [e]-Fusion Induced High-Performance DHP/CPD Based Photoswitches. PHYSICAL CHEMISTRY CHEMICAL PHYSICS Journal, 22, 26255, 2021.
左希. Giant and robust intrinsic spin Hall effects in metal dihydrides: A first-principles prediction. PHYSICAL REVIEW B, 103, 2021.
崔彬. Realization of Lieb lattice in covalent-organic frameworks with tunable topology and magnetism. Nature Communications, 11, 66, 2020.
2009年10月,凝聚態物理教學與科研的相互性研究,山東大學研究生教學成果一等獎。
2008年4月,國務院政府特貼
2004年7月,“有機高分子功能性質的基礎研究”,山東省自然科學獎;三等獎;解士傑, 劉德勝,等;
2004年12月,“鐵磁/有機系統的自旋態研究”,山東省教育廳優秀科研成果二等獎,解士傑,劉德勝,等;
2003年12月,“Doping states of xPPP/yPA diblock copolymers”, 山東省教育廳科技進步二等獎,劉德勝,解士傑,等;
2003年12月,“無序和尺度對光致反向極化的影響”, 山東省教育廳科技進步三等獎,王鹿霞,劉德勝,等;
2003年11月,“共聚物的電子結構與物性研究”,濟寧市科技進步二等獎,
2003年8月,“准一維共聚物電子結構及性質研究”,山東省優秀博士論文
2002年12月,“准一維三明治結構共聚物的電子態”,山東省教育廳科技進步二等獎,劉德勝,解士傑,等;
2001年7月, “聚對苯乙炔的基態、極化子與雙極化子激發態及其穩定性”,山東省優秀科研成果二等獎,劉德勝,趙俊卿,等;
2001年12月,“二嵌段共聚物電子結構性質研究”,山東省教育廳優秀科研成果二等獎,劉德勝,梅良模,等;
2001年濟寧市優秀科技工作者,並榮立三等功,
2001年濟寧市十佳優秀科技工作者,
2000年中國科學院獎學金,
2000年濟寧師專校級科研成果特等獎,
1999年山東大學研究生光華獎學金,
1999年濟寧師專校級科研成果二等獎。