• 2024

    •  

    Kang, X.; Song, J.; Liu, J.; Cao, S.; Lin, Z.; Jiang, H.; Yang, Y.; Cheng, X.; Ai, Y.; Sun, X.; Zeng, K.; Zhu, Z.*; Peng, H.*, An efficient fiber gel dye-sensitized solar cell with stable interlaced interfaces. Adv. Funct. Mater. 2024, 2404361.

    380.pdf380-1.pdf

    •  

    Zhu, Z.; Lin, Z.; Zhai, W.; Kang, X.; Song, J.; Lu, C.; Jiang, H.; Chen, P.; Sun, X.; Wang, B.; Wang, Z.; Peng, H.*, Indoor photovoltaic fiber with an efficiency of 25.53% under 1500 lux illumination. Adv. Mater. 2024, 36, 2304876.

    •  

    Ye, L.; Liao, M.; Zhang, K.; Zheng, M.; Jiang, Y.; Cheng, X.; Wang, C.; Xu, Q.; Tang, C.; Li, P.; Wen, Y.; Xu, Y.; Sun, X.; Chen, P.; Sun, H.; Gao, Y.; Zhang, Y.; Wang, B.*; Lu, J.*; Zhou, H.*; Wang, Y.*; Xia, Y.; Xu, X.; Peng, H.*, “A rechargeable calcium-oxygen battery that operates at room temperature”, Nature 2024, 626, 313-318.

    367.pdf

    •  

    Tang, C.; Zhang, K.; Cao, M.; Yu, S.; Guan, H.; Zhang, K.; Pan, Y.; Zhang, S.; Sun, X.*; Peng H.* “All-metal flexible fiber by continuously assembling nanowires for high electrical conductivity”, Small 2024, 202405000.

    362.pdf362-1.pdf

    •  

    Tang, C.; Han, Z.; Liu, Z.; Li, W.; Shen, J.; Zhang, K.; Mai, S.; Li, J.; Sun, X.; Chen, X.; Li, H.; Wang, L.; Liang, J.; Liao, M.; Feng, J.; Wang, C.; Wang, J.; Ye, L.; Yang, Y.; Xie, S.; Shi, X.; Zeng, K.; Zhang, X.; Cheng, X.; Zhang, K.; Guo, Y.; Yang, H.; Xu, Y.; Tong, Q.; Yu, H.*; Chen, P.; Peng H.*; Sun, X.* “A Soft-Fiber Bioelectronic Device with Axon-Like Architecture Enables Reliable Neural Recording In Vivo under Vigorous Activities”, Adv. Mater. 2024, 202407874.

    361.pdf361-1.docx

    •  

    Yu, S.; Tang, C.; Yu, S.; Li, W.; Wang, J.; Liu, Z.; Yan, X.; Wang, L.; Yang, Y.; Feng, J.; Wu, J.; Zhang, K.; Guan, H.; Liu, Y.; Zhang, S,; Sun, X.*; Peng H. “A Biodegradable fiber calcium ion sensor by covalently bonding ionophores on bioinert nanoparticles”, Adv. Healthcare Mater. 2024, 2400675.

    360.pdf360-1.pdf

    •  

    Zhang, K.; Tang, C.; Yu, S.; Guan, H.; Sun, X.; Cao, M,; Zhang, S,; Sun, X.*; Peng H. “High-performing fiber electrodes based on gold-shelled silver nanowire framework for bioelectronics”, J. Mater. Chem. B 2024, 12, 5594-5599.

    359.pdf359-1.pdf

    •  

    李金妍, 唐成强, 李雯君, 黄滔, 孙雪梅*, 彭慧胜, “基于直接电子转移的柔性纤维葡萄糖传感器”, 高分子学报, 2024, 55, 872-880.

    358.pdf

    •  

    Liu, Z.; Tang, C.; Li, J.; Yang, Y.; Li, W.; Wang, J.; Yu, S.; Wang, C.; Qin, Y.; Tong, Q.; Sun, X.*; Peng H.* “Real-time and continuous monitoring of brain deformation”, Adv. Electron. Mater. 2024, 10, 2300732.

    357.pdf357-1.pdf

    •  

    Wang, J.; Wang, L.; Yang, Y.; Li, H.; Jiang, H.; Huang, X.; Liu, Z.; Yu, S.; Tang, C.; Chen, J.; Shi, X.; Li, W.; Chen, P.; Tong, Q.; Yu, H.; Sun, X.*; Peng H.* “A fiber sensor for long-term monitoring of extracellular potassium ion fluctuations in chronic neuropsychiatric diseases”, Adv. Mater. 2024, 36, 2309862.

    356.pdf356-1.pdf

  • 2023

    •  

    Wang, L.; Jiang, H.; Wan, F.; Sun, H.; Yang, Y.; Li, W.; Qian, Z.; Sun, X.*; Chen, P.*; Chen, S.; Peng H.* “High-performance artificial ligament made from helical polyester fibers wrapped with aligned carbon nanotube sheets”, Adv. Healthcare Mater. 2023, 12, 2301610.

    352.pdf352-1.pdf

    •  

    Qian, Z.; Yang, Y.; Wang, L.; Wang, J.; Guo, Y.; Liu, Z.; Li, J.; Zhang, H.; Sun, X.; Peng, H. “An implantable fiber biosupercapacitor with high power density by multi-strand twisting functionalized fibers”, Angew. Chem. Int. Ed. 2023, 62, 2303268.

    347.pdf347-1.pdf

    •  

    Zeng, K.; Yang, Y.; Xu, J.; Wang, N.; Tang, W.; Xu, J.; Zhang, Y.; Wu, Y.; Xu, Y.; Wang, G.; Chen, P.; Wang, B.; Sun, X.; Jin, G.; Peng, H. “Metal-backboned polymers with well-defined lengths”, Angew. Chem. Int. Ed. 2023, 62, 2216060.

    343.pdf343-1.pdf

    •  

    Liu, Y.; Zhou, X.; Yan, H.; Shi, X.; Chen, K.; Meng, J.; Wang, T.; Wu, J.; Chen, J.; Zeng, K.; Chen, L.*; Peng, Y.; Sun, X.; Chen, P.; Peng, H. “Highly reliable textile memristor by designing aligned nanochannels”, Adv. Mater. 2023, 35, 2301321.

    341.pdf341-1.pdf

    •  

    Wang, L.; Wan, F.; Xu, Y.; Xie, S.; Zhao, T.; Zhang, F.; Yang, H.; Zhu, J.; Gao, J.; Shi, X.; Wang, C.; Lu, L.; Yang, Y,; Yu, X.; Chen, S.; Sun, X.; Ding, J.; Chen, P.; Deng, C.; Xu, F.; Yu, H.; Peng, H. “Hierarchically assembled helical fibre integrates effectively with bones”, Nature Nanotech. 18, 1085-1093.

    340.pdf340-1.pdf

    •  

    Fang, Y.; Feng, J.; Shi, X.; Yang, Y.; Wang, J.; Sun, X.; Li, W.; Sun, X.; Peng, H. “Coaxial fiber organic electrochemical transistor with high transconductance”, Nano Res. 2023, 18, 11885-11892.

    339.pdf339-1.pdf

    •  

    Feng, J.; Fang, Y.; Wang, C.; Chen, C.; Tang, C.; Guo, Y.; Wang, L.; Yang, Y.; Zhang, K.; Wang, J.; Chen, J.; Sun, X.; Peng, H. “All-polymer fiber organic electrochemical transistor for chronic chemical detection in the brain”, Adv. Funct. Mater. 2023, 33, 2214945.

    334.pdf334-1.pdf

    •  

    Tang, C.; Yang, Y.; Sun, X.; Peng, H. “Scalable production of stretchable conductive fibers for textile electronics”, Matter 2023, 6, 1675-1684.

    326.pdf

  • 2022

    •  

    Kang, X.; Zhu, Z.; Zhao, T.; Zhai, W.; Xu, J.; Wang, B.; Sun, X.; Chen, P.; Peng, H. “Hierarchically assembled counter electrode for fiber solar cell showing record power conversion efficiency”, Adv. Funct. Mater. 2022, 32, 2207763.

    322.pdf322-1.pdf

    •  

    Deng, J.; Sun, X.; Peng, H. “Power supplies for cardiovascular implantable electronic devices”, EcoMat 2022, EOM2-2022-0174.

    320.pdf

    •  

    Ye, L.; Cheng, X.; Liao, M.; Zhao, T.; Huang, X.; Kang, X.; Sun, X.; Wang, B.; Peng, H. , eScience 2022, 2, 606-614.

    319.pdf319-1.pdf

    •  

    Wu, HY.; Shi, X.; Zhou, ZH.; Liu, Y.; Cheng, X.; Yang, Y.; Kang, X.; Guo, Y.; Wang, B.; Sun, X.; Chen, P.; Peng, H.“Seamlessly-integrated Textile Electric Circuit Enabled by Self-connecting Interwoven Points", Chin. J Polym. Sci. 2022, 40, 1323-1330.

    317.pdf

    •  

    Yang, H.;Qian, Z.;Wang, J.;Feng, J.;Tang, C.;Wang, L.;Guo, Y.;Liu, Z.;Yang, Y.;Zhang, K.;Chen, P.;Sun, X.;Peng, H., “Carbon Nanotube Array-Based Flexible Multifunctional Electrodes to Record Electrophysiology and Ions on the Cerebral Cortex in Real Time", Adv. Funct. Mater. 2022, 32, 2204794.

    316.pdf316-1.pdf

    •  

    Guo, Y.;  Sun, X.; Peng, H. “Flexible Fiber Bioelectronic Composite Materials and Devices”, Acta Polym Sin. 2022, 53, 707-721.

    312.pdf

    •  

    Chen, W.; Chen, Q.; Cui, C.; Duan, S.; Kang, Y.; Liu, Y.; Liu, Y.; Muhammad, W.; Shao, S.; Tang, C.; Wang, L.; Wang, L.; Xiong, M.; Yin, L.; Zhang, K.; Zhang, Z.; Zhen, X.; Fen, J.; Gao, C.; Gu, Z.; He, C.; Ji,; Jiang,; Liu, W.; Liu, Z.; Peng, H.; Shen, Y.; Shi, L.; Sun, X.; Wang, H.; Wang,; Xiao, H.; Xu, F.; Zhong, Z.; Zhang, X.; Chen, X. “Biomedical polymers: synthesis, properties, and applications”, Sci. China Chem. 2022, 10.1007/s11426-022-1243-5.

    311.pdf

    •  

    Guo, Y.; Chen, C.; Feng, J.; Wang, L.; Wang, J.; Tang, C.; Sun, X.; Peng, H. “An anti-biofouling flexible fiber biofuel cell working in the brain”, Small Methods, 2022, 2200142.

    307.pdf307-1.pdf

    •  

    Liao, M.; Wang, C.; Hong, Y.; Zhang, Y.; Cheng, X.; Sun, H.; Huang, X.; Ye, L.; Wu, J.; Shi, X.; Kang, X.; Zhou, X.; Wang, J.; Li, P.; Sun, X.; Chen, P.; Wang, B.; Wang, Y.; Xia, Y.; Peng, H. “Industrial scale production of fibre batteries using solution-extrusion”, Nat. Nanotech. 2022, 17, 372-377.

    300.pdf300-1.pdf

    •  

    Zhao, Y.; Chen, C.; Qiu, Y.; Mei, T.; Ye, L.; Feng, H.; Zhang, Y.; Wang, L.; Guo, Y.; Sun, X.; Wu, J.;Peng, H. “Injectable fiber electronics for tumor treatment”, Adv. Fiber Mater. 2022, 4, 246-255.

    299.pdf299-1.pdf

  • 2021

    •  

    Huang, C.; Kang, X.; Rossi, R.; Kovalenko, M.; Sun, X.; Peng, H.; Boesel, L. “Energy harvesting textiles: using wearable luminescent solar concentrators to improve the efficiency of fiber solar cells”,J. Mater. Chem. A, 2021,9, 25974-25981.

    297.pdf297-1.pdf

    •  

    Chen, C.; Sun, X.; Peng, H. “The rise of soft neural electronics”, Giant, 2021, 8, 100075

    294.pdf


    •  

    Wang, L.; Chen, J.; Wang, J.; Li, H.; Chen, C.; Feng, J.; Guo, Y.; Yu, H.; Sun, X.; Peng, H. “Flexible dopamine-sensing fiber based on potentiometric method for long-term detection in vivo”, Sci. China Chem., 2021, 64, 1763–1769.

    292.pdf


    •  

    He, J.; Lu, C.; Jiang, H.; Han, F.; Shi, X.; Wu, J.; Wang, L.; Chen, T.; Wang, J.; Zhang, Y.; Yang, H.; Zhang, G.; Sun, X.; Wang, B.; Chen, P.; Wang, Y.; Xia, Y.; Peng, H. “Scalable production of high-performing woven lithium-ion fibre batteries”, Nature, 2021, 597, 57-63.

    291.pdf

    •  

    Mei, T.; Wang, C.; Liao, M.; Li, J.; Wang, L.; Tang, C.; Sun, X.; Wang, B.; Peng, H. “Biodegradable and Rechargeable Fiber Battery”, J. Mater. Chem. A, 2021, 9, 10104-10109.

    285.pdf285-1.pdf

    •  

    Wang, J.; Wang, L.; Feng, J.; Tang, C.; Sun, X.; Peng, H. “Long-term in vivo monitoring of chemicals with fiber sensor”, Adv. Fiber Mater., 2021, 3, 47-58. Wang, J.; Wang, L.; Feng, J.; Tang, C.; Sun, X.; Peng, H. “Long-term in vivo monitoring of chemicals with fiber sensor”, Adv. Fiber Mater., 2021, 3, 47-58.

    281.pdf


    •  

    Feng, J.; Chen, C.; Sun, X.; Peng, H. “Implantable fiber biosensors based on carbon nanotubes”, Acc. Mater. Res., 2021, 2, 138-146

    280.pdf

    •  

    Shi, X.; Zuo, Y.; Zhai, P.; Shen, J.; Yang, Y.; Gao, Z.; Liao, M.; Wang, J.; Xu, X.; Tong, Q.; Zhang, B.; Sun, X.; Zhang, L.; Pei, Q.; Jin, D.; Chen, P.; Peng, H. “Large-area display textiles integrated with functional systems”, Nature, 2021, 591, 240-245.

    279.pdf


    •  

    Zhao, Y.; Mei, T.; Ye, L.; Li, Y.; Wang, L.; Zhang, Y.; Chen, P.; Sun, X.; Wang, C.; Peng, H. “Injectable fiber battery for all-region power supply in vivo”, J. Mater. Chem. A, 2021, 9, 1463-1470.

    278.pdf278-1.pdf

    •  

    Fu, X.; Li, J.; Tang, C.; Xie, S.; Sun, X.; Wang, B.; Peng, H. “Hydrogel cryo-microtomy continuously making soft electronic devices”, Adv. Funct. Mater., 2021, 31, 2008355.

    275.pdf



  • 2020

    •  

    Zuo, Y.; Shi, X.; Zhou, X.; Xu, X.; Wang, J.; Chen, P.; Sun, X.; Peng, H. “Flexible color-tunable electroluminescent devices by designing dielectric-distinguishing double-stacked emissive layers”, Adv. Funct. Mater., 2020, 30, 2005200.

    274.pdf274-1.pdf

    •  

    Wang, K. J.; Amin, K.; An, Z. S.; Cai, Z. X.; Chen, H.; Chen, H. Z.; Dong, Y. P.; Feng, X.; Fu, W. Q.; Gu, J. B.; Han, Y. C.; Hu, D. D.; Hu, R. R.; Huang, D.; Huang, F.; Huang, F. H.; Huang, Y. Z.; Jin, J.; Jin, X.; Li, Q. Q.; Li, T. F.; Li, Z.; Li, Z. B.; Liu, J. G.; Liu, J.; Liu, S. Y.; Peng, H.; Qin, A. J.; Qing, X.; Shen, Y. Q.; Shi, J. B.; Sun, X. M.; Tong, B.; Wang, B.; Wang, H.; Wang, L. X.; Wang, S.; Wei, Z. X.; Xie, T.; Xu, C. Y.; Xu, H. P.; Xu, Z. K.; Yang, B.; Yu, Y. L.; Zeng, X.; Zhan, X. W.; Zhang, G. Z.; Zhang, J.; Zhang, M. Q.; Zhang, X. Z.; Zhang, X.; Zhang, Y.; Zhang, Y. Y.; Zhao, C. S.; Zhao, W. F.; Zhou, Y. F.; Zhou, Z. X.; Zhu, J. T.; Zhu, X. Y.; Tang, B. Z. “Advanced functional polymer materials”, Mater. Chem. Front., 2020, 4, 1803-1915.

    272.pdf


    •  

    Wu, X.; Feng, J.; Deng, J.; Cui, Z.; Wang, L.; Xie, S.; Chen, C.; Tang, C.; Han, Z.; Yu, H.; Sun, X.; Peng, H. “Fiber-shaped organic electrochemical transistor for biochemical detections with high sensitivity and stability”, Science China Chemistry., 2020, 63, 1281–1288.

    269.pdf269-1.pdf

    •  

    Tang, C.; Xie, S.; Wang, M.; Feng, J.; Han, Z.; Wu, X.; Wang, L.; Chen, C.; Wang, J.; Jiang, L.; Chen, P.; Sun, X.; Peng, H. “Fiber-shaped neural probe with alterable elastic moduli for direct implantation and stable electronics-brain interfaces”, J. Mater. Chem. B, 2020, 8, 4387-4394.

    266.pdf266-1.pdf

    •  

    任婧,王永刚,孙雪梅,陈培宁,彭慧胜,“纤维电化学储能器件的研究进展”,《科学通报》,2020,65,3150-3159。

    263.pdf


    •  

    Liao, M.; Wang, J.; Ye, L.; Sun, H.; Wen, Y.; Wang, C.; Sun, X.; Wang, B.; Peng, H.“A Deep‐Cycle Aqueous Zinc‐Ion Battery Containing an Oxygen‐Deficient Vanadium Oxide Cathode” Angew. Chem. Int. Ed., 2020, 59, 2273-2278.

    257.pdf257-1.pdf

    •  

    Chen, P.; Sun, X.; Peng, H. “Emerging soft bioelectronics”, Adv. Funct. Mater., 2020, 30, 2001827.

    256.pdf


    •  

    Zhou, X.; Xu, X.; Zuo, Y.; Liao, M.; Shi, X.; Chen, C.; Xie, S.; Zhou, P.; Sun, X.; Peng, H. “A fiber-shaped light-emitting pressure sensor for visualized dynamic monitoring” J. Mater. Chem. C., 2020, 8, 935-942.

    255.pdf255-1.pdf

    •  

    Wang, L.; Xie, S.; Wang, Z.; Liu, F.; Yang, Y.; Tang, C.; Wu, X.; Liu, P.; Li, Y.; Saiyin, H.; Zheng, S.; Sun, X.; Xu, F.; Yu, H.; Peng, H. "Functionalized helical fibre bundles of carbon nanotubes as electrochemical sensors for long-term in vivo monitoring of multiple disease biomarkers"  Nat. Biomed. Eng., 2020, 4, 159-171.

    253.pdf

  • 2019

    •  

    Ye, L.; Liao, M.; Zhao, T.; Sun, H.; Zhao, Y.; Sun, X.; Wang, B.; Peng, H. "Sodiophilic interphase mediated, dendrite-free anode with ultrahigh specific capacity for sodium-metal batteries"  Angew. Chem. Int. Ed., 2019, 58, 17054–17060.

    247.pdf247-1.pdf

    •  

    Hong, Y.; Cheng, X.; Liu, G.; Hong, D.; He, S.; Wang, B.; Sun, X.; Peng, H. “One-step production of continuous supercapacitor fibers for a flexible power textile” Chinese J. Polym. Sci., 2019, 37, 8, 737–743.

    244.pdf244-1.pdf

    •  

    Gao, Z.; Liu, P.; Fu, X.; Xu, L.; Zuo, Y.; Zhang, B.; Sun, X.; Peng, H.  “Flexible self-powering textile by bridging photoactive and electrochemically active fiber electrodes” J. Mater. Chem. A, 2019, 7, 14447-14454.

    240.pdf240-1.pdf

    •  

    Deng, J.; Zhuang, W.; Bao, L.; Wu, X.; Gao, J.; Wang, B.; Sun, X.; Peng, H. “A tactile sensing textile with bending-independent pressure perception and spatial acuity” Carbon, 2019, 149, 63-70.

    235.pdf235-1.pdf

    •  

    Zuo, Y.; Xu, X.; Tao, X.; Shi, X.; Zhou, X.; Gao, Z.; Sun, X.; Peng, H. “A novel information storage and visual expression device based on mechanoluminescence” J. Mater. Chem. C, 2019, 7, 4020-4025.

    233.pdf233-1.pdf

    •  

    Fu, X.; Li, Z.; Xu, L.; Liao, M.; Sun, H.; Xie, S.; Sun, X.; Wang, B.; Peng, H.  “Amphiphilic Core-Sheath Structured Composite Fiber for Comprehensively Performed Supercapacitor” Sci. China Mater., 2019, 62, 955-964.

    232.pdf232-1.pdf

    •  

    Bao, L.; Xu, X.; Zuo, Y.; Liu, F.; Yang, Y.; Xu, F.; Sun, X.; Peng, H. “Piezoluminescent devices by designing array structures” Science Bulletin, 2019, 64, 151-157.

    230.pdf


    •  

    Ye, L.; Liao, M.; Sun, H.; Yang, Y.; Tang, C.; Zhao, Y.; Wang, L.; Xu, Y.; Zhang, L.; Wang, B.; Xu, F.; Sun, X.; Zhang, Y.; Dai, H.; Bruce, P.; Peng, H. “Stabilizing lithium into cross-stacked nanotube sheets with ultrahigh specific capacity for lithium oxygen battery” Angew. Chem. Int. Ed., 2019, 58, 2437-2442.

    229.pdf229-1.pdf

    •  

    Lu, L.; Zhou, Y.; Pan, J.; Chen, T.; Hu, Y.; Zhou, G.; Dai, K.; Liu, C.; Shen, C.; Sun, X.; Peng, H. “Design of Helically Double-Leveled Gaps for Stretchable Fiber Strain Sensor with Ultralow Detection Limit, Broad Sensing Range, and High Repeatability” ACS Appl. Mater. Interfaces, 2019, 11, 4345-4352.

    227.pdf227-1.pdf

  • 2018

    •  

    Fu, X.; Xu, L.; Li, J.; Sun, X.; Peng, H. “Flexible solar cells based on carbon nanomaterials” Carbon, 2018, 139, 1063-1073.

    223.pdf

    •  

    Liu, P.; Gao, Z.; Xu, L.; Shi, X.; Fu, X.; Li, K.; Zhang, B.; Sun, X.; Peng, H.“Polymer solar cell textiles with interlaced cathode and anode fibers” J. Mater. Chem. A, 2018, 6, 19947-19953.

    222.pdf222-1.pdf

    •  

    Wang, L.; Wang, L.; Zhang, Y.; Pan, J.; Li, S.; Sun, X.; Zhang, B.; Peng, H.“Weaving Sensing Fibers into Electrochemical Fabric for Real‐Time Health Monitoring”  Adv. Funct. Mater., 2018, 28, 1804456.

    221.pdf221-1.pdf

    •  

    Sun, H.; Liao, M.; Li, J.; Zhou, C.; Deng, J.; Fu, X.; Xie, S.; Zhang, B.; Wu, Y.; Wang, B.; Sun, X.; Peng, H. “Programmable actuating systems based on swimming fiber robots” Carbon, 2018, 11(139), 241-247.

    218.pdf218-1.pdf

    •  

    Liao, M.; Sun, H.; Tao, X.; Xu, X.; Li, Z.; Fu, X.; Xie, S.; Ye, L.; Zhang, Y.; Wang, B.; Sun, X.; Peng, H.“The alignment of thermally conducting nanotubes making high-performance light-driving motors” ACS Appl. Mater. Interfaces, 2018, 10 (31), 26765–26771.

    217.pdf217-1.pdf

    •  

    Zhang, Z.; Cui, L.; Shi, X.; Tian, X.; Wang, D.; Gu, C.; Chen, E.; Cheng, X.; Xu, Y.; Hu, Y.; Zhang, J.; Zhou, L.; Fong, H. H.; Ma, P.; Jiang, G.; Sun, X.; Zhang, B.; Peng, H.“Textile display for electronic and brain-interfaced communications” Adv. Mater., 2018, 30, 1704378.

    209.pdf209-1.pdf

    •  

    Fu, X.; Sun, H.; Xie, S.; Zhang, J.; Pan, Z.; Liao, M.; Xu, L.; Li, Z.; Wang, B.; Sun, X.; Peng, H. “A fiber-shaped solar cell showing record power conversion efficiency of 10%” J. Mater. Chem. A, 2018, 6, 45-51.

    207.pdf

    •  

    Liu, P.; Li, Y.; Xu, Y.; Bao, L.; Wang, L.; Zhang, Z.; Sun, X.; Peng, H.“Stretchable and Energy-Efficient Heating Carbon Nanotube Fiber by Designing a Hierarchically Helical Structure” Small, 2018, 14, 1702926.

    205.pdf205-1.pdf

    •  

    Zhang, Z.; Liao, M.; Lou, H.; Hu, Y.; Sun, X.; Peng, H. “Conjugated Polymers for Flexible Energy Harvesting and Storage” Adv. Mater., 2018, 1704261.

    204.pdf

    •  

    Pan, J.; Li, H.; Sun, H.; Zhang, Y.; Wang, L.; Liao, M.; Sun, X.; Peng, H.“A Lithium–Air Battery Stably Working at High Temperature with High Rate Performance” Small, 2018, 14, 1703454.

    200.pdf200-1.pdf

    •  

    Liao, M.; Sun, H.; Zhang, J.; Wu, J.; Xie, S.; Fu, X.; Sun, X.; Wang, B.; Peng, H. “Multicolor, fluorescent supercapacitor fiber” Small, 2018, 14, 1702052

    199.pdf199-1.pdf

  • 2017

    •  

    Xu, Y.; Chen, P.; Zhang, J.; Xie, S.; Wan, F.; Deng, J.; Cheng, X.; Hu, Y.; Liao, M.; Wang, B.; Sun, X.; Peng, H.“A One-Dimensional Fluidic Nanogenerator with a High Power Conversion Efficiency” Angew. Chem. Int. Ed., 2017, 129, 12940-12945.

    193.pdf193-1.pdf

    •  

    Zhang, J.; Bao, L.; Lou, H.; Deng, J.; Chen, A.; Hu, Y.; Zhang, Z.; Sun, X.; Peng, H.“Flexible and Stretchable Mechanoluminescent Fiber and Fabric” J. Mater. Chem. C, 2017, 5, 8027-8032.

    188.pdf188-1.pdf

    •  

    Zhang, L.; Liao, M.; Bao, L.; Sun, X.; Peng, H.“The functionalization of miniature energy storage devices” Small Methods, 2017, 1, 1700211.

    187.pdf

    •  

    Deng, J.; Xu, Y.; He, S.; Chen, P.; Bao, L.; Hu, Y.; Wang, B.; Sun, X.; Peng, H.“Preparation of biomimetic hierarchically helical fiber actuators from carbon nanotubes” Nature Protoc., 2017, 12, 1349-1358.

    182.pdf182-1.pdf

    •  

    Yu, X.; Pan, J.; Zhang, J.; Sun, H.; He, S.; Qiu, L.; Lou, H.; Sun, X.; Peng, H.“A coaxial triboelectric nanogenerator fiber for energy harvesting and sensing under deformation” J. Mater. Chem. A, 2017, 5, 6032-6037.

    181.pdf181-1.pdf

    •  

    Sun, H.; Zhang, Y.; Zhang, J.; Sun, X.; Peng, H.“Energy harvesting and storage in 1D devices” Nature Rev. Mater., 2017, 2, 17023.

    180.pdf

    •  

    Zhang, L.; Liu, F.; Sun, X.; Wei, G.; Tian, Y.*; Liu, Z.*; Huang, R.; Yu, Y.; Peng, H.“Engineering carbon nanotube fiber for real-time quantification of ascorbic acid levels in a live rat model of Alzheimer's disease” Anal. Chem., 2017, 89, 1831-1837.

    179.pdf179-1.pdf

  • 2016

    •  

    Yu, X.; Pan, J.; Deng, J.; Zhou, J.; Sun, X.; Peng, H.“A novel photoelectric conversion yarn by integrating photomechanical actuation and electrostatic effect” Adv. Mater., 2016, 28, 10744-10749.

    172.pdf172-1.pdf

    •  

    Sun, H.; Xie, S.; Li, Y.; Jiang, Y.; Sun, X.; Wang, B.; Peng, H.“Large-area supercapacitor textiles with novel hierarchical conducting structures” Adv. Mater., 2016, 28, 8431-8438.

    167.pdf167-1.pdf

    •  

    Huang, G.; Liu, L.; Wang, R.; Zhang, J.; Sun, X.; Peng, H.“Smart color-changing textile with high contrast based on single-sided conductive fabric” J. Mater. Chem. C, 2016, 4, 7589-7594.

    165.pdf165-1.pdf

    •  

    Qiu, L.; He, S.; Yang, J.; Jin, F.; Deng, J.; Sun, H.; Cheng, X.; Guan, G.; Sun, X.; Zhao, H.; Peng, H.“An all-solid-state fiber-type solar cell achieving 9.49% efficiency” J. Mater. Chem. A, 2016, 4, 10105-10109.

    164.pdf164-1.pdf

    •  

    Lu, X.; Zhang, Z.; Sun, X.; Chen, P.; Zhang, J.; Guo, H.; Shao, Z.; Peng, H.“Flexible and stretchable chromatic fibers with high sensing reversibility” Chem. Sci., 2016, 7, 5113-5117.

    159.pdf159-1.pdf

    •  

    Weng, W.; Chen, P.; He, S.; Sun, X.; Peng, H.“Smart electronic textiles ” Angew. Chem. Int. Ed., 2016, 55, 6140-6169.

    153.pdf

    •  

    Liu, L.; Pan, J.; Chen, P.; Zhang, J.; Yu, X.; Ding, X.; Wang, B.; Sun, X.; Peng, H.“A triboelectric textile templated by a three-dimensionally penetrated fabric” J. Mater. Chem. A, 2016, 4, 6077-6083.

    151.pdf151-1.pdf

    •  

    Zhang, J.; He, S.; Liu, L.; Guan, G.; Lu, X.; Sun, X.; Peng, H.“The continuous fabrication of mechanochromic fibers” J. Mater. Chem. C, 2016, 4, 2127-2133.

    149.pdf149-1.pdf


    •  

    Deng, J.; Li, J.; Chen, P.; Fang, X.; Sun, X.; Jiang, Y.; Weng, W.; Wang, B.; Peng, H.“Tunable photothermal actuators based on a pre-programmed aligned nanostructure” J. Am. Chem. Soc., 2016, 138, 225-230.

    148.pdf148-1.pdf

  • 2015

    •  

    Li, H.; Sun, X.; Peng, H.“ Mechanochromic Fiber with Structural Color” ChemPhysChem, 2015, 16, 3761-3768.

    140.pdf


    •  

    He, S.; Chen, P.; Qiu, L.; Wang, B.; Sun, X.; Xu, Y.; Peng, H. "A mechanically actuating carbon nanotube fiber in response to water and moisture” Angew. Chem. Int. Ed., 2015, 54, 14880-14884.

    139.pdf139-1.pdf

    •  

    Cheng, X.; Fang, X.; Chen, P.; Doo, S.; Son, I.; Huang, X.; Zhang, Y.; Weng, W.; Zhang, Z.; Deng, J.; Sun, X.; Peng, H.“Designing one-dimensional supercapacitor in strip shape for high performance energy storage fabrics” J. Mater. Chem. A, 2015, 3, 19304-19309.

    135.pdf135-1.pdf

    •  

    Chen, P.; He, S.; Xu, Y.; Sun, X.; Peng, H. "Electromechanical Actuator Ribbons Driven by Electrically Conducting Spring-Like Fibers" Adv. Mater., 2015, 27, 4982-4988.

    128.pdf128-1.pdf

    •  

    Sun, H.; He, S.; Qiu, L.; You, X.; Yang, J.; Fu, X.; Chen, P.; Guan, G.; Yang, Z.; Sun, X.; Peng, H.“Energy harvesting and storage devices fused into various patterns” J. Mater. Chem. A, 2015, 3, 14977-14984.

    127.pdf127-1.pdf

    •  

    Sun, X., Zhang, J.; Lu, X.; Fang, X.; Peng, H. "Mechanochromic photonic crystal fiber based on continuous aligned carbon nanotube sheet" Angew. Chem. Int. Ed., 2015, 54, 3630-3634.

    117.pdf117-1.pdf

    •  

    Sun, X.*; Lu, X.; Qiu, L.; Peng, H.“Orienting polydiacetylene using aligned carbon nanotubes” J. Mater. Chem. C, 2015, 3, 2642-2649.

    116.pdf116-1.pdf

    •  

    Chen, P.; Xu Y.; He S.; Sun X.; Guo W.; Zhang Z.; Qiu L.; Li J.; Chen D.; Peng H.“Biologically inspired, sophisticated motions from helically assembled, conducting fibers”Adv. Mater., 2015,  27, 1042-1047.

    111.pdf111-1.pdf

    •  

    Qiu, L.; Wu, Q.; Yang, Z.; Sun, X.; Zhang, Y.; Peng, H.“Freestanding aligned carbon nanotube array grown on a large-area single-layered graphene sheet for efficient dye-sensitized solar cell” Small, 2014, 11, 1150-1155.

    109.pdf109-1.pdf

  • 2014

    •  

    Chen, X.; Lin, H.; Deng, J.; Zhang, Y.; Sun, X.; Chen, P.; Fang, X.; Zhang, Z.; Guan, G.; Peng, H.“Electrochromic Fiber-Shaped Supercapacitors” Adv. Mater., 2014, 26, 8126-8132.

    108.pdf108-1.pdf

    •  

    Lu, X.; Zhang, Z.; Li, H. Sun, X.; Peng, H.“Conjugated polymer composite artificial muscle with solvent-induced anisotropic mechanical actuation” J. Mater. Chem. A, 2014, 2, 17272–17280.

    104.pdf104-1.pdf

    •  

    Qiu, L.; Jiang, Y.; Sun, X.; Liu, X.; Peng, H.“Surface-nanostructured cactus-like carbon microspheres for efficient photovoltaic devices” J. Mater. Chem. A, 2014, 2, 15132-15138.

    103.pdf103-1.pdf

    •  

    尤晓,孙雪梅,彭慧胜.“取向碳纳米管纤维及其能源应用”,《中国材料进展》,2014, 8, 36-42.

    101.pdf


    •  

    Yang, Z.; Deng, J.; Sun, X.; Li, H.; Peng, H.“Stretchable, wearable dye-sensitized solar cells” Adv. Mater., 2014, 26, 2643-2647.

    87.pdf87-1.pdf

  • 2013

    •  

    Guan, G.; Yang, Z.; Qiu, L.; Sun, X.; Zhang, Z.; Ren, J.; Peng, H.“Oriented poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) on aligned carbon nanotubes for efficient dye-sensitized solar cell” J. Mater. Chem. A., 2013, 1, 13268-13273.

    77.pdf77-1.pdf

    •  

    Sun, X.; Sun, H.; Li, H.; Peng, H.“Developing polymer composite materials: carbon nanotubes or graphene?” Adv. Mater., 2013, 25.5153-5176.

    71.pdf


    •  

    Sun, X.; Zhang, Z.; Lu, X.; Guan, G.; Li, H.; Peng, H“Electric current test paper based on conjugated polymer and aligned carbon nanotube” Angew. Chem. Int. Ed., 2013, 52, 7776-7780. (The first two authors contribute equally)

    68.pdf68-1.pdf

    •  

    Sun, X.; Chen, T.; Yang, Z.; Peng, H.“The alignment of carbon nanotubes: an effective route to extend their excellent properties to macroscopic scale” Acc. Chem. Res., 2013, 46, 539-549.

    64.pdf

    •  

    Sun, X.; Zhang, Z.; Guan, G.; Qiu, L.; Peng, H.“The synthesis of porous materials with macroscopically oriented mesopores interconnected by branch mesopores” J. Mater. Chem. A., 2013, 1, 4693-4698.

    58.pdf58-1.pdf

    •  

    Chen, T.; Cai, Z.; Qiu, L.; Li, H.; Ren, J.; Lin, H.; Yang, Z.; Sun, X.; Peng, H.“Synthesis of aligned carbon nanotube composite fibers with high performances by electrochemical deposition” J. Mater. Chem. A, .2013, 1, 2211-2216.

    57.pdf57-1.pdf

  • 2012

    •  

    Chen, T.; Qiu, L.; Yang, Z.; Cai, Z.; Ren, J.; Li, H.; Lin, H.; Sun, X.; Peng, H. “An integrated energy wire for both photoelectric conversion and energy storage” Angew. Chem. Int. Ed., 2012, 51, 11977-11980.

    53.pdf53-1.pdf

    •  

    Wang, W.; Sun, X.; Wu, W.; Peng, H.; Yu, Y.“Photoinduced deformation of crosslinked liquid-crystalline polymer film oriented by a highly aligned carbon nanotube sheet” Angew. Chem. Int. Ed., 2012, 51, 4644-4647.

    52.pdf52-1.pdf

    •  

    Sun, X.; Wang, W.; Qiu, L.; Guo, W.; Yu, Y.; Peng, H.“Unusual reversible photomechanical actuation in polymer/nanotube composites” Angew. Chem. Int. Ed., 2012, 51, 8520-8524.

    51.pdf51-1.pdf

    •  

    Sun, X.; Qiu, L.; Cai, Z.; Meng, Z.; Chen, T.; Lu, Y.; Peng, H.“Hierarchically tunable helical assembly of achiral porphyrin-incorporated alkoxysilane” Adv. Mater., 2012, 24, 2906-2910.

    49.pdf49-1.pdf

    •  

    Guo, W.; Liu, C.; Zhao, F.; Sun, X.; Yang, Z.; Chen, T.; Chen, X.; Qiu, L.; Hu, X.; Peng, H. " A novel electromechanical actuation mechanism of carbon nanotube fiber” Adv. Mater., 2012, 24, 5379-5384.

    48.pdf48-1.pdf

    •  

    Guan, G.; Qiu, Z.; Sun, X.; Yang, Z.; Qiu, L.; Ma, Q.; Peng, H. “A Nanotube colorant for synthetic fibers with much improved properties” J. Mater. Chem., 2012, 22, 18653-18657.

    45.pdf45-1.pdf


    •  

    Guo, W.; Liu, C.; Sun, X.; Yang, Z.; Kia, H. G.; Peng, H.“Aligned carbon nanotube/polymer composite fibers with improved mechanical strength and electrical conductivity” J. Mater. Chem., 2012, 22, 903-908.

    41.pdf41-1.pdf

    •  

    Qiu, L.; Sun, X.; Yang, Z.; Guo, W.; Peng, H.“Preparation and application of aligned carbon nanotube/polymer composite material”  Acta Chimica Sinica,2012, 70, 1523-1532.

    40.pdf

    •  

    Chen, X.; Li, L.; Sun, X.; Kia, H. G.; Peng, H. " A novel synthesis of graphene nanoscrolls with tunable dimension at a large scale” Nanotechnology, 2012, 23, 055603.

    38.pdf

  • 2011

    •  

    Li, L.; Zhang, L.; Ren, J.; Zhang, H.; Sun, X.; Li, H.; Chen, T.; Peng, H.  "Intriguing hybrid nanotubes with tunable structures" Chem. Phys. Lett., 2011, 516, 204-207.

    37.pdf


    •  

    Yang, Z.; Sun, X.; Chen, X.; Yang, Z.; Xu, G.; He, R.; An, Z.; Li, Q.; Peng, H. "Dependence of structure and properties of carbon nanotube fibers on heating treatment" J. Mater. Chem., 2011, 23,  13772-13775.

    35.pdf35-1.pdf

    •  

    Chen, T.; Cai, Z.; Yang, Z.; Li, L.; Sun, X.; Huang, T.; Yu, A.; Kia, H. G.; Peng, H.  "Nitrogen-doped carbon nanotube composite fiber with a core-sheath structure for novel electrode" Adv. Mater., 2011, 23,  4620-462.

    32.pdf32-1.pdf

    •  

    Li, L.; Yang, Z.; Gao, H.; Zhang, H.; Ren, J.; Sun, X.; Chen, T.; Kia, H. G.; Peng, H. "Vertically aligned and penetrated carbon nanotube/polymer composite film and promising electronic applications" Adv. Mater., 2011, 23,  3730-3735.

    31.pdf31-1.pdf

    •  

    Chen, X.; Li, L.; Sun, X.; Liu, Y.; Luo, B.; Wang, C.; Bao, Y.; Xu, H.; Peng, H.  "Magnetochromatic polydiacetylene by incorporation of Fe3O4 nanoparticles" Angew. Chem. Int. Ed., 2011, 50, 5486-5489.

    30.pdf30-1.pdf

    •  

    Chen, T.; Wang, S.; Yang, Z.; Feng, Q.; Sun, X.; Li, L.; Wang, Z.; Peng, H.  "Flexible, Light-Weight, Ultrastrong, and Semiconductive Carbon Nanotube Fibers for a Highly Efficient Solar Cell" Angew. Chem. Int. Ed., 2011, 50, 1815-1819.

    29.pdf29-1.pdf

  • 2010

    •  

    Sun, X.; Chen, T.; Huang, S.; Li, L.; Peng, H. "Chromatic polydiacetylene with novel sensitivity" Chem. Soc. Rev., 2010, 39, 4244-4257.

    27.pdf

    •  

    Sun, X.; Chen, T.; Huang, S.; Cai, F.; Chen, X.; Yang, Z.; Li, L.;Cao, H; Lu, Y.; Peng, H. "UV-induced chromatism of polydiacetylenic assemblies" J. Phys. Chem. B, 2010, 114, 2379-2383.

    26.pdf26-1.pdf

  • 2009

    •  

    Peng, H.; Sun, X.; Cai, F.; Chen, X.; Zhu, Y.; Liao, G.; Chen, D.; Li, Q.; Lu, Y.; Zhu, Y.; Jia, Q.“Electrochromatic carbon nanotube/polydiacetylene nanocomposite fibres”Nature Nanotechnol., 2009, 4, 738-741.

    25.pdf25-1.pdf

    •  

    Sun, X.; Chen, T.; Huang, S.; Cai, F.; Chen, X.; Yang, Z.; Lu, Y.; Peng, H.  "Stimuli-sensitive assemblies of homopolymers" Langmuir, 2009, 25, 11980-11983.

    24.pdf

    •  

    Peng, H.; Sun, X.; Zhao, P.; Chen, D. "Core-cross-linked polymer micelles via living polymerizations" Mater. Sci. Eng. C, 2009, 29, 746-750.

    23.pdf

    •  

    Peng, H.; Sun, X.“Highly aligned carbon nanotube/polymer composites with much improved electrical conductivities”Chem. Phys. Lett., 2009, 471, 103-105.

    22.pdf

    •  

    Peng, H.; Sun, X.“Macroporous carbon nanotube arrays with tunable pore sizes and their template applications” Chem. Commun., 2009, 1058-1060.

    21.pdf

© 2024 复旦大学孙雪梅课题组    技术支持:维程互联