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教授
博士生导师
硕士生导师
教师拼音名称:
lu hongbo
出生日期:
1979-01-06
入职时间:
2006-06-30
所在单位:
化学与化工学院
学历:
博士研究生毕业
性别:
男
学位:
博士学位
在职信息:
在职
毕业院校:
中国科学技术大学
学科:
材料学
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[11]Lu H*, Wu T, Wang H, et al. Zero-field bandwidth stable, reflection bandwidth controllable polymer- stabilisedcholesteric liquid crystals enabled by dynamic covalent boronic ester bonds[J]. Liquid Crystals 2023, 50(11-12), 1774-1785.
[12]Lu H*, Zhu M, Cao Y, et al. Fast-relaxation, dye-doped cholesteric liquid-crystal smart window with a perfect planar state[J]. Dyes and Pigments, 2023, 208: 110795.
[13]Ma C, Bai H, Liang Y, et al. Multi-stable dye-doped dual-frequency twisted nematic liquid crystal smart window[J]. Optics Letters, 2023, 48(14): 3813-3816.
[14]Liang Y, Wang Y, Lu H*, et al. Controlling the Pretilt Angles of Guest–Host Liquid Crystals via a Hydrophilic Polyimide Layer through Oxygen Plasma Treatment[J]. ACS Applied Electronic Materials, 2022, 4(9): 4632-4640.
[15]Lu H*, Huang P, Wu T, et al. PDLC with controllable microstructure using wavelength-selective two-stage polymerization[J]. Polymer, 2022, 243: 124641.
[16]Lu H*, Ma C, Ren M, et al. Fast dual-mode switchable smart window based on the dual-frequency liquid crystal electrohydrodynamic instability[J]. Optics Letters, 2022, 47(16): 4231-4234.
[17]Shi J, Ma C, Lu H*, et al. Stable and tunable single-mode lasers based on cholesteric liquid crystal microdroplets[J]. Applied Optics, 2022, 61(11): 2937-2942.
[18]Xia X, Liang Y, Lu H*, et al. Tuning of polymer-wall surface components and its effect on the optoelectronic performance of liquid crystal devices with polymer walls[J]. Molecular Crystals and Liquid Crystals, 2022, 736(1): 93-102.
[19]Lu H*, Wang Q, Zhu M, et al. Electrically controllable reflection bandwidth polymer-stabilized cholesteric liquid crystals with low operating voltage[J]. Liquid Crystals, 2022, 49(10): 1314-1321.
[20]Yang J, Zhang G, Lu H*, et al. Highly efficient and tunable terahertz polarization converter based on double subwavelength metallic gratings infiltrated with liquid crystal[J]. Applied Optics, 2022, 61(28): 8265-8272.
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