論文專著:
出版專著:
1、《Bio-inspired Wettability Surfaces: Developments in Micro- and Nanostructures》.
主要譯著者:Y. Zheng*, Q. Cheng, Y. Hou, Y. Chen
出版機構:Pan Stanford Publishing
出版日期:2015-6-21
出版地:USA
2、《Bioinspired Design of Materials Surfaces》
主要譯著者:Yongmei Zheng
出版機構:Elsevier
出版日期:2019-8-9
代表性論文:
[1]Dongdong Yu, Xuefeng Han, Shaomin Wang, Lieshuang Zhong, Lei Zhang, Maolin Zhou, Qiang Luo, Tiance Zhang, Lingmei Zhu, Yongping Hou, Yongmei Zheng.Flexible photothermal-triggered MOF-composite nanofibers textures for freshwater harvesting with high efficiency and stability.Separation and Purification Technology. Volume 331, 1 March 2024, 125629.https://doi.org/10.1016/j.seppur.2023.125629
[2]Lei Zhang, Bingcai Luo, Kun Fu, Chunlei Gao, Xuefeng Han, Maolin Zhou, Tiance Zhang, Lieshuang Zhong, Yongping Hou, Yongmei Zheng.Highly Efficient Photothermal Icephobic/de-Icing MOF-Based Micro and Nanostructured Surface. Advanced Science.Volume10, Issue34. December 6, 2023 .2304187.https://doi.org/10.1002/advs.202304187
[3]Chunlei Gao, Lei Zhang, Yongping Hou, Yongmei Zheng*.A UV-Resistant Heterogeneous Wettability Patterned Surface. Advanced Materials.Volume35, Issue42 October 19, 2023. 2304080https://doi.org/10.1002/adma.202304080
[4]Maolin Zhou, Lei Zhang, Lieshuang Zhong, Mingshuo Chen, Lingmei Zhu, Tiance Zhang, Xuefeng Han, Yongping Hou, Yongmei Zheng*.Robust Photothermal Icephobic Surface with Mechanical Durability of Multi-bioinspired Structures. Advanced Materials.Online Version of Record before inclusion in an issue 2305322.https://onlinelibrary.wiley.com/doi/10.1002/adma.202305322
[5]Shaomin Wang, Lingmei Zhu, Dongdong Yu, Xuefeng Han, Lieshuang Zhong, Yongping Hou, Yongmei Zheng*.Bioinspired Robust Helical-Groove Spindle-Knot Microfibers for Large-Scale Water Collection.Advanced Materials. Volume33, Issue48 November 23, 2023 2305244. https://doi.org/10.1002/adfm.202305244
[6]Xuefeng Han, Lieshuang Zhong, Lei Zhang, Lingmei Zhu, Maolin Zhou, Shaomin Wang, Dongdong Yu, Huan Chen, Yongping Hou, Yongmei Zheng*. Efficient Atmospheric Water Harvesting of Superhydrophilic Photothermic Nanocapsule. Small. Volume19, Issue47 November 22, 2023 2303358. https://doi.org/10.1002/smll.202303358
[7]Jinmu Huan, Mingshuo Chen, Yongping Hou * , Yongmei Zheng *.Special fog harvesting mode on bioinspired hydrophilic dual-thread spider silk fiber.Chemical Engineering Journal. Volume 473, 1 October 2023, 145174.https://doi.org/10.1016/j.cej.2023.145174
[8]Xinxin Geng, Yan Xing, Jinmu Huan, Yongping Hou,* Yongmei Zheng*.Integrative Bioinspired Surface with Annular Pattern and Three Dimension Wettable Gradient for Enhancement of Fog Collection .Advanced Materials. Volume10, Issue4 February 3,2023, 2201978. https://doi.org/10.1002/admi.202201978.
[9]Lieshuang Zhong, Huan Chen, Lingmei Zhu, Maolin Zhou, Lei Zhang, Shaomin Wang, Xuefeng Han, Yongping,Yongmei Zheng*.Liquid Confine-Induced Gradient-Janus Wires for Droplet Self-Propelling Performances in High Efficiency.
[10]Lieshuang Zhong, Huan Chen, Lingmei Zhu, Lei Zhang, Shaomin Wang, Yongping Hou, and Yongmei Zheng*.Underwater Fast Bubble Generating on Pitaya Thorn and Enhanced Biomimetic Gas Collection.
[11]Lingmei Zhu # , Jinghui Li # , Leishuang Zhong, Lei Zhang, Maolin Zhou, Huan Chen, Yongping Hou, Yon.,Yongmei Zheng*。Excellent dual-photothermal freshwater collector with high performance in large-scale evaporation.
[12]Lingmei Zhu # , Jinghui Li # , Leishuang Zhong, Lei Zhang, Maolin Zhou, Huan Chen, Yongping Hou, Yon.E,Yongmei Zheng*.xcellent dual-photothermal freshwater collector with high performance in large-scale evaporation.
[13]Lei Zhang, Chunlei Gao, Lieshuang Zhong, Lingmei Zhu, Huan Chen, Yongping Hou, Yongmei Zheng.Robust photothermal superhydrophobic coatings with dual-size micro/ nano structure enhance anti-/de-icing and chemical resistance properties.
[14]Liu, Yufang; Zhai, Huajun; Li, Xin; Yang, Nan; Guo, Zhenyu; Zhu, Lingmei; Gao, Chunlei; Hou, Yongping; Zheng, Yongmei*.High efficient fog-water harvesting via spontaneous swallowing mechanism.Nano Energy, 2022, 96: 107076.
[15]Qianqian Wang, Yi He, Xinxin Geng, Yongping Hou,* and Yongmei Zheng*.Enhanced Fog Harvesting through Capillary-Assisted Rapid Transport of Droplet Confined in the Given Microchannel
[16]Feng, Shile; Wang, Qianqian; Xing, Yan; He, Yi; Geng, XinXin; Hou, Yongping*; Zheng, Yongmei*.Electromigration-triggered programmable droplet spreading.Chemical Engineering Journal, 2021, 423: 130281.
[17]Pei, Wenle; Li, Jinghui; Guo, Zhenyu; Liu, Yufang; Gao, Chunlei; Zhong, Lieshuang; Wang, Shaomin; Hou, Yongping; Zheng, Yongmei*.Excellent fog harvesting performance of liquid-infused nano-textured 3D frame.Chemical Engineering Journal, 2021, 409: 128180.
[18]Zhong, Lieshuang; Zhu, Lingmei; Li, Jinghui; Pei, Wenle; Chen, Huan; Wang, Shaomin; Razaa, Aamir; Khan, Assad; Hou, Yongping; Zheng, Yongmei*.Recent advances in biomimetic fog harvesting: focusing on higher efficiency and large-scale fabrication.Molecular Systems Design & Engineering, 2021.
[19]Li, Jinghui; Gao, Chunlei; Pei, Wenle; Guo, Zhenyu; Zhong, Lieshuang; Liu, Yufang; Wang, Shaomin; Hou, Yongping*; Zheng, Yongmei*.Elastic Microstaggered Porous Superhydrophilic Framework as a Robust Fogwater Harvester.ACS Applied Materials & Interfaces, 2020, 12(42): 48049-48056.
[20]Liu, Yufang; Yang, Nan; Gao, Chunlei; Li, Xin; Guo, Zhenyu; Hou, Yongping*; Zheng, Yongmei*.Bioinspired Nanofibril-Humped Fibers with Strong Capillary Channels for Fog Capture.ACS Applied Materials & Interfaces, 2020, 12(25): 28876-28884.
[21]Feng, Shile; Wang, Qianqian; Xing, Yan; Hou, Yongping*; Zheng, Yongmei*.Continuous Directional Water Transport on Integrating Tapered Surfaces.Advanced Materials Interfaces, 2020, 7(9): 2000081.
[22]Zhang, Miaoxin; Li, Jinghui; Pei, Wenlei; Liu, Yufang; Zhong, Lieshuang; Wang, Shaomin; Zheng, Yongmei*.Droplet Manipulation: Magically Cut Apart Microdroplet by Smart Nanofibrils Wire.Advanced Materials Interfaces, 2020, 7(10): 2000161.
[23]Li, Xin; Liu, Yufang; Zhou, Hu; Gao, Chunlei; Li, Diansen*; Hou, Yongping*; Zheng, Yongmei*.Fog Collection on a Bio-inspired Topological Alloy Net with Micro-/Nanostructures.ACS Applied Materials & Interfaces, 2020, 12(4): 5065-5072.
[24]Hou, Yongping*; Xing, Yan; Feng, Shile; Gao, Chunlei; Zhou, Hu; Zheng, Yongmei*.Droplet Self-Propelling Control on Bioinspired Fiber in Low Temperature and High Humidity Environment.Advanced Materials Interfaces, 2020, 7(1): 1901183.
[25]Yufang Liu, Nan Yang, Xin Li, Jinghui Li, Wenle Pei, Yiwen Xu, Yongping Hou,* and Yongmei Zheng*.Water Harvesting of Bioinspired Microfibers with Rough Spindle-Knots from Microfluidics.Small 2020, 16, 1901819
[26]Zhenyu Guo, Bo Peng, Yufang Liu, Jinghui Li, Wenle Pei, Qunyang Li,* and Yongmei Zheng*.Extremely Ice-Detached Array of Pine Needle-Inspired Concave-Cone Pillars.Adv. Mater. Interfaces 2020, 7, 1901714.
[27]Lin Yucai; Pei Wenle; Sun Ruoxuan; Gao Chunlei; Chen Jipeng; Zheng Yongmei*.Droplet Condensation on Surfaces with Special Wettability.Chemical Journal of Chinese Universities, 2019, 40(6): 1236-1241.
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[32]Li, Chang; Liu, Yufang; Gao, Chunlei; Li, Xin; Xing, Yan; Zheng, Yongmei*.Fog Harvesting of a Bioinspired Nanocone-Decorated 3D Fiber Network.ACS Applied Materials & Interfaces, 2019, 11(4): 4507-4513.
[33]Lin, Yucai; Hu, Ziying; Zhang, Miaoxin; Xu, Ting; Feng, Shile; Jiang, Lei; Zheng, Yongmei*.Magnetically Induced Low Adhesive Direction of Nano/Micropillar Arrays for Microdroplet Transport.Advanced Functional Materials, 2018, 28(49): 1800163.
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[53]Wang, Xin; Zhang, Ming-Qian; Kou, Ran; Lu, Lei-Lei; Zhao, Yang; Xu, Xue-Wei; Liu, Guang-Ming; Zheng, Yong-Mei; Yu, Shu-Hong*.Unique Necklace-Like Phenol Formaldehyde Resin Nanofibers: Scalable Templating Synthesis, Casting Films, and Their Superhydrophobic Property.Advanced Functional Materials, 2016, 26(28): 5086-5092.
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[56]Wang Ting; Kuang Minxuan; Jin Feng; Cai Jinhua; Shi Lei; Zheng Yongmei; Wang Jingxia*; Jiang Lei.Simultaneous synthesis/assembly of anisotropic cake-shaped porphyrin particles toward colloidal microcrystals.Chemical Communications, 2016, 52(18): 3619-3622.
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[61]Shi, Weiwei; Wang, Lei; Guo, Zhenyu; Zheng, Yongmei*.Excellent Anti-Icing Abilities of Optimal Micropillar Arrays with Nanohairs.Advanced Materials Interfaces, 2015, 2(18): 1500352.
[62]Liu, Chengcheng; Xue, Yan; Chen, Yuan; Zheng, Yongmei*.Effective directional self-gathering of drops on spine of cactus with splayed capillary arrays.Scientific Reports, 2015, 5: 17757.
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[68]Sun, Leilei; Zheng, Yongmei*.Bio-inspired artificial cilia with magnetic dynamic properties.Frontiers of Materials Science, 2015, 9(2): 178-184.
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[70]Wang, Sijie; Feng, Shile; Hou, Yongping; Zheng, Yongmei*.Controlling of Water Collection Ability by an Elasticity-Regulated Bioinspired Fiber.Macromolecular Rapid Communications, 2015, 36(5): 459-464.
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[108]Mei Huan; Luo Ding; Wang Jing; Zheng Yong Mei*.Condensed-drop Repellency of Butterfly Wings with Biological Photonic Crystals.Chemical Journal of Chinese Universities, 2012, 33(3): 575-579.
[109]Chen, Yuan; Wang, Lin; Xue, Yan; Zheng, Yongmei*; Jiang, Lei.Bioinspired spindle-knotted fibers with a strong water-collecting ability from a humid environment.SOFT MATTER, 2012, 8(45): 11450-11454.
[110]Guo, Peng; Zheng, Yongmei*; Liu, Chengcheng; Ju, Jie; Jiang, Lei.Directional shedding-off of water on natural/bio-mimetic taper-ratchet array surfaces.Soft Matter, 2012, 8(6): 1770-1775. (IF=4.457).
[111]Y. Zhang* & L. Jiang. Smart Bio-Inspired Interfacial Materials for Unique Wettability.Science product.
[112]Bai, Hao; Sun, Ruize; Ju, Jie; Yao, Xi; Zheng, Yongmei*; Jiang, Lei.Large-Scale Fabrication of Bioinspired Fibers for Directional Water Collection.Small, 2011, 7(24): 3429-3433.(Cover story, Highlight by RSC) (IF=7.333).
[113]Tian, Xuelin; Chen, Yuan; Zheng, Yongmei*; Bai, Hao; Jiang, Lei.Controlling Water Capture of Bioinspired Fibers with Hump Structures.Advanced Materials, 2011, 23(46): 5486−5491. (Cover story, Highlight by RSC) (IF=10.86).
[114]Bai, Hao; Ju, Jie; Sun, Ruize; Chen, Yuan; Zheng, Yongmei*; Jiang, Lei.Controlled Fabrication and Water Collection Ability of Bioinspired Artificial Spider Silks.Advanced Materials, 2011, 23(32): 3708-3711.(Cover story) (IF=10.86).
[115]Sun, Mingxia; Liang, Aiping; Zheng, Yongmei*; Watson, Gregory S.; Watson, Jolanta A. A study of the anti-reflection efficiency of natural nano-arrays of varying sizes.Bioinspiration & Biomimetics, 2011, 6(2): 1-3.
[116]Tian, Xuelin*; Bai, Hao; Zheng, Yongmei; Jiang, Lei.Bio-inspired Heterostructured Bead-on-String Fibers That Respond to Environmental Wetting.Advanced Functional Materials, 2011, 21(8): 1398-1402.(IF=8.486) (Cover story).
[117]Cheng, Qunfeng; Li, Mingzhu; Zheng, Yongmei; Su, Bin; Wang, Shutao*; Jiang, Lei.Janus interface materials: superhydrophobic air/solid interface and superoleophobic water/solid interface inspired by a lotus leaf.Soft Matter, 2011, 7(13): 5948-5951. (IF=4.457).
[118]Tang, Qingxin; Tong, Yanhong; Zheng, Yongmei; He, Yudong; Zhang, Yajie; Dong, Huanli; Hu, Wenping*; Hassenkam, Tue; Bjornholm, Thomas.Organic Nanowire Crystals Combine Excellent Device Performance and Mechanical Flexibility.Small, 2011, 7(2): 189-193. (IF=7.333)(Cover story).
[119]Huang, Zhongbing; Chen, Yuan; Zheng, Yongmei*; Jiang, Lei.Capillary adhesion of wetted cribellate spider capture silks for larger pearly hanging-drops.Soft Matter, 2011, 7(19): 9468-9473. (IF=4.457).
[120]Mei, Huan; Luo, Ding; Guo, Peng; Song, Cheng; Liu, Chengcheng; Zheng, Yongmei*; Jiang, Lei.Multi-level micro-/nanostructures of butterfly wings adapt at low temperature to water repellency.Soft Matter, 2011, 7(22): 10569-10573. (IF=4.457).
[121]J. Zeng, N. Xiang, L. Jiang, G. Jones, Y. Zheng, B. Liu, S. Zhang*. Moth Wing Scales Slightly Increase the
Absorbance of Bat Echolocation Calls. PLoS ONE 2011, 6, e27190. (IF=4.351).
[122]Bai, Hao; Tian, Xuelin; Zheng, Yongmei; Ju, Jie; Zhao, Yong; Jiang, Lei*.Direction Controlled Driving of Tiny Water Drops on Bioinspired Artificial Spider Silks.Advanced Materials, 2010, 22(48): 5521-5525. (Cover story, Highlight by Nature, NPG Asia-materials).(IF=10.86).
[123]Wang Jing-Ming; Wang Ke; Zheng Yong-Mei; Jiang Lei.Effects of Chemical Composition and Nano-structures on the Wetting Behaviour of Lotus Leaves.CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2010, 31(8): 1596-1599.
[124]Liu, Mingjie; Zheng, Yongmei; Zhai, Jin; Jiang, Lei*.Bioinspired Super-antiwetting Interfaces with Special Liquid-Solid Adhesion.Accounts of Chemical Research, 2010, 43(3): 368-377.(IF=18.203).
[125]Zheng, Yongmei; Bai, Hao; Huang, Zhongbing; Tian, Xuelin; Nie, Fu-Qiang; Zhao, Yong; Zhai, Jin; Jiang, Lei*.Directional water collection on wetted spider silk.Nature, 2010, 463(7281): 640-643.(Cover story, Highlight by Nature, BBC, RSC et al) (IF=36.101).
[126] L. Feng, Y. Zhang, M. Li, Y. Zheng, W. Shen & L. Jiang. The structural color of red rose petals and their
duplicates. Langmuir 2010, 26(18), 14885–14888. (IF=3.898).
[127]Wang, Jingming; Zheng, Yongmei; Nie, Fu-Qiang; Zhai, Jin; Jiang, Lei.Air Bubble Bursting Effect of Lotus Leaf.Langmuir, 2009, 25(24): 14129-14134.(IF=3.898).
[128]Sun, Mingxia; Watson, Gregory S.; Zheng, Yongmei; Watson, Jolanta A.; Liang, Aiping.Wetting properties on nanostructured surfaces of cicada wings.Journal of Experimental Biology, 2009, 212(19): 3148-3155.(IF=2.72).
[129]Zhang, Jihua; Cheng, Zhongjun; Zheng, Yongmei*; Jiang, Lei.Ratchet-induced anisotropic behavior of superparamagnetic microdroplet.Applied Physics Letters, 2009, 94(14): 1-3. (IF=3.820).
[130]P. Chen, L. Chen, D. Han, J. Zhai, Y. Zheng, & L. Jiang. Wetting Behavior at Micro-/Nanoscales: Direct Imaging of a Microscopic Water/Air/Solid Three-Phase Interface. Small 2009, 5, 908–912. (IF=7.333).
[131]F. Liu, B. Dong, X. H. Liu, Y. Zheng, & J. Zi. Structural color change in longhorn beetles Tmesisternus isabellae. Optics Express 2009 17, 16183. (IF=3.28).
[132]Wang Jing-Ming; Zheng Yong-Mei; Jiang Lei.Bubble Transfer Effect of Superhydrophobic Mesh Structure in Water.CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2008, 29(12): 2484-2488.
[133]Zheng, Yongmei; Jiang, Lei; Wang, Jingxia; Han, Dong.Extreme "water repellency" on strong water-spreading surface without tilted degree actuation.Applied Physics Letters, 2008, 93(9): 1-3.(IF=3.820).
[134]Yongmei Zheng*; D. Han; J. Zhai; L. Jiang.In situ investigation on dynamic suspending of micro-droplet on lotus leaf and gradient of wettable micro- and nanostructure from water condensation.Applied Physics Letters, 2008, 92: 1-3.(IF=3.820).
[135]Zhang, Jihua; Wang, Jinming; Zhao, Yong; Xu, Liang; Gao, Xuefeng; Zheng, Yongmei; Jiang, Lei*.How does the leaf margin make the lotus surface dry as the lotus leaf floats on water.Soft Matter, 2008, 4(11): 2232-2237. (Highlight by RSC) (IF=4.457).
[136]E. Tian, J. Wang, Y. Zheng, Y. Song & L. Jiang, Colorful Humidity-sensitive Photonic Crystal Hydrogel, J. Mater.
Chem. 2008, 18, 1116–1122 (Cover story, highlighted by RSC). (IF=4.795).
[137]Yongmei Zheng; X. Gao; L. Jiang.Directional adhesion of superhydrophobic butterfly wings.Applied Physics Letters, 2007, 3: 178-182. (Cover story, Highlighted by RSC). (IF=4.457).
[138]Zhong, Lieshuang; Chen, Huan; Zhu, Lingmei; Zhang, Lei; Wang, Shaomin; Hou, Yongping; Zheng, Yongmei*.Underwater Fast Bubble Generating on Pitaya Thorn and Enhanced Biomimetic Gas Collection.Advanced Materials Interfaces, 2200274.
[139]Guo, Zhenyu; Peng, Bo; Liu, Yufang; Li, Jinghui; Pei, Wenle; Li, Qunyang*; Zheng, Yongmei*.Extremely Ice-Detached Array of Pine Needle-Inspired Concave-Cone Pillars.Advanced Materials Interfaces, 1901714.
[140]Liu, Yufang; Yang, Nan; Li, Xin; Li, Jinghui; Pei, Wenle; Xu, Yiwen; Hou, Yongping*; Zheng, Yongmei*.Water Harvesting of Bioinspired Microfibers with Rough Spindle-Knots from Microfluidics.Small, 1901819.
[141]Y. Zhu, J. Zhang, Y. Zheng, Z. Huang, L. Feng & L. Jiang. Stable, Superhydrophobic, and Conductive Polyaniline/
Polystyrene Films for Corrosive Environments. Adv. Funct. Mater. 2006, 16, 568−574. (IF=6.99).
[142]J. Wang, Y. Wen, H. Ge, Z. Sun, Y. Zheng, Y. Song, L. Jiang, Simple Fabrication of Full Color Colloidal Crystal
Films with Tough Mechanical Strength, Macromol. Chem. Phys. 2006, 207, 596–604. (IF=2.570).
[143]Y. Zhu, J. C. Zhang, J. Zhai, Y. Zheng, L. Feng & L. Jiang. Multifunctional Carbon Nanofibers with Conductive,
Magnetic and Superhydrophobic Properties. ChemPhysChem 2006, 7, 336–341. (IF=3.453).
中文期刊論文:
[1]高春雷, 鄭詠梅. 仿生多微納米梯度界面的液滴動態(tài)行為調控[J]. 應用化學, 2022, 39 (01): 110-130.
[2]林玉才, 裴文樂, 孫若璇, 高春雷, 陳基棚, 鄭詠梅. 特殊浸潤性表面的液滴凝結[J]. 高等學校化學學報, 2019, 40 (06): 1236-1241.
[3]李丹, 鄭詠梅. 微納米復合的各向異性結構表面的液滴驅動[J]. 高等學;瘜W學報, 2018, 39 (01): 109-114.
[4]王磊, 侯永平, 鄭詠梅*. 多尺度柔性結構的防覆冰性能[J]. 高等學;瘜W學報, 2015, 36 (08): 1548-1552.
[5]張明乾, 周蕾, 楊守斌, 鄭詠梅*. 新型仿生微納米界面微量流體輸運調控材料[J]. 復合材料學報, 2015, 32 (04): 1166-1172.
[6]文孟喜, 鄭詠梅*. 微納米結構復合表面的疏水-冰性能[J]. 高等學;瘜W學報, 2014, 35 (05): 1011-1015.
[7]梅歡, 羅丁, 汪晶, 鄭詠梅. 生物光子晶體蝴蝶翅膀表面的凝結液滴憎水性[J]. 高等學;瘜W學報, 2012, 33 (03): 575-579.
[8]孫明霞, 鄭詠梅, 梁愛萍. 昆蟲體表疏水性研究進展[J]. 中國科學院研究生院學報, 2011, 28 (03): 275-287.
[9]鄭詠梅*, 戴浩宇. 草葉表面的一維非對稱界面摩擦特性[J]. 吉林大學學報(理學版), 2011, 49 (01): 145-148.
[10]張佑專, 李志榮, 鄭詠梅, 王京霞, 宋延林, 江雷. 仿生制備功能性聚合物光子晶體[J]. 高分子學報, 2010, (11): 1253-1261.
[11]王景明, 王軻, 鄭詠梅, 江雷. 荷葉表面納米結構與浸潤性的關系[J]. 高等學;瘜W學報, 2010, 31 (08): 1596-1599.
[12]曾今堯, 劉丙萬, 鄭詠梅, 江雷. 美國白蛾及其他5種燈蛾鱗片超微結構的比較[J]. 林業(yè)科學, 2010, 46 (06): 97-101+184-185.
[13]王景明, 鄭詠梅, 江雷. 超疏水網(wǎng)狀結構對水中氣泡的轉移作用[J]. 高等學;瘜W學報, 2008, 29 (12): 2484-2488.
[14]姚昱星, 姚希, 李作林, 竺豪楨, 鄭詠梅. 蚊子體表面的微納米結構與浸潤性[J]. 高等學;瘜W學報, 2008, (09): 1826-1828.
[15]姚倩, 曾今堯, 鄭詠梅, 梁冰, 江雷, 張樹義. 回聲定位蝙蝠耳蝸毛細胞靜纖毛的長度特征[J]. 中國科學(C輯:生命科學), 2007, (03): 358-362.
[16]朱英, 張敬暢, 鄭詠梅, 翟錦, 江雷. 浸潤性可調的導電聚苯胺/聚丙烯腈同軸納米纖維[J]. 高等學;瘜W學報, 2006, (01): 196-198.