[1] P L Wei, T Chen, G Y Chen, et al. Conductive Self-Healing Nanocomposite Hydrogel Skin Sensors with Antifreezing and Thermoresponsive Properties [J]. ACS Appl Mater Interfaces, 2020, 12(2): 3068-79.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/decc4ee0-3ed8-4861-94d3-bdf27f8ede5c.png)
2020.2
[1] X W Hu, H G Wang, C F J Faul, et al. A crosslinking alkylation strategy to construct nitrogen-enriched tetraphenylmethane-based porous organic polymers as efficient carbon dioxide and iodine adsorbents [J]. Chem Eng J, 2020, 382(8.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/74548659-d4e8-4919-8d71-c5462ded07c1.jpg)
[2] K Hou, Y L Nie, I T Mugaanire, et al. A novel leaf inspired hydrogel film based on fiber reinforcement as rapid steam sensor [J]. Chem Eng J, 2020, 382(11.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/31f4d16f-c674-441f-8a35-63b60dc37240.png)
[3] G Y Chen, Y L Ai, I T Mugaanire, et al. A simple inorganic hybrids strategy for graphene fibers fabrication with excellent electrochemical performance [J]. Journal of Power Sources, 2020, 450(
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/0ba7d592-a4e7-4216-9727-4370a4338219.png)
[4] H Y Chen, R L Wang, L Qian, et al. Surface modification of urchin-like serried hydroxyapatite with sol-gel method and its application in dental composites [J]. Composites Part B-Engineering, 2020, 182(7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/4e7679fa-a904-4377-9675-5c44ed0ae5a9.jpg)
[5] Z X Hu, K Hou, J L Gao, et al. Enhanced photo-stability polyphenylene sulfide fiber via incorporation of multi-walled carbon nanotubes using exciton quenching [J]. Compos Pt A-Appl Sci Manuf, 2020, 129(8.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/2a2bb1b8-b03a-460e-a8ee-e998be9504ce.jpg)
2020.3
[1] P L Wei, K Hou, T Chen, et al. Reactive spinning to achieve nanocomposite gel fibers: from monomer to fiber dynamically with enhanced anisotropy [J]. Materials Horizons, 2020, 7(3): 811-9.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/d65895b8-ac13-4c30-99ae-238aa12dd4c3.jpg)
[2] L J Yang, W Weng, X Fei, et al. Revealing the interrelation between hydrogen bonds and interfaces in graphene/PVA composites towards highly electrical conductivity [J]. Chem Eng J, 2020, 383(
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/7cb6cf2c-13ed-464f-9569-d1d688a2090d.jpg)
[3] W N Pan, J L Zhou, H X Xiang, et al. Melt-spun industrial super-strong polycaprolactam fiber: Effects of tie-molecules and crystal transformation [J]. Composites Part B-Engineering, 2020, 185(
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/5a0592ae-838f-4e00-9204-2c628b34beee.png)
2020.4
[1] J Zhu, S H Lv, T H Yang, et al. Facile and Green Strategy for Designing Ultralight, Flexible, and Multifunctional PVA Nanofiber-Based Aerogels [J]. Adv Sustain Syst, 2020, 4(4): 8.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/780534f6-bf0c-4b7f-b047-ef99a8124d54.png)
[2] X Ao, Y Du, D Yu, et al. Synthesis, characterization of a DOPO-based polymeric flame retardant and its application in polyethylene terephthalate [J]. Progress in Natural Science-Materials International, 2020, 30(2): 200-7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/4305e0a1-134e-4b5d-b546-92a2dd92b200.png)
2020.5
[1] Q Q Xue, S F Huo, T Y Wang, et al. Diastereoselective Synthesis of P-Chirogenic and Atropisomeric 2,2 '-Bisphosphino-1,1 '-binaphthyls Enabled by Internal Phosphine Oxide Directing Groups [J]. Angew Chem-Int Edit, 2020, 59(21): 8153-9.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/3c4f9df9-41e3-46c8-a225-fc7f0469753b.jpg)
[2] Z X Liu, W Y Wang, J J Tan, et al. Bioinspired ultra-thin polyurethane/MXene nacre-like nanocomposite films with synergistic mechanical properties for electromagnetic interference shielding [J]. J Mater Chem C, 2020, 8(21): 7170-80.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/85239d5f-5bb4-4858-8205-89b927b90287.png)
[3] Z H Cheng, L Wang, Y He, et al. Rapid metal-free synthesis of pyridyl-functionalized conjugated microporous polymers for visible-light-driven water splitting [J]. Polymer Chemistry, 2020, 11(20): 3393-7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/9834526c-8027-47ad-8e05-5565c6d68b9d.png)
[4] S C Wang, M T Innocent, Q Q Wang, et al. Kraft lignin-based piezoresistive sensors: Effect of chemical structure on the microstructure of ultrathin carbon fibers [J]. International Journal of Biological Macromolecules, 2020, 151(730-9.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/ce3821c6-66d1-4926-9399-59012363388c.png)
2020.6
[1] Q Liu, J J Yang, X G Luo, et al. Fabrication of a fibrous MnO2@MXene/CNT electrode for high-performance flexible supercapacitor [J]. Ceramics International, 2020, 46(8): 11874-81.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/b260e338-a54b-4190-a7a4-2aa55e2d1de1.png)
2020.7
[1] G Wang, L W Feng, W Huang, et al. Mixed-flow design for microfluidic printing of two-component polymer semiconductor systems [J]. Proc Natl Acad Sci U S A, 2020, 117(30): 17551-7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/9df8ec68-bc16-4430-8f39-5cdcb29c20f9.png)
2020.8
[1] Z Cui, S A He, Q Liu, et al. Graphene-Like Carbon Film Wrapped Tin (II) Sulfide Nanosheet Arrays on Porous Carbon Fibers with Enhanced Electrochemical Kinetics as High-Performance Li and Na Ion Battery Anodes [J]. Adv Sci, 2020, 7(18): 11.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/8aa7de4b-e1fc-4f4e-8094-895b53edfe4e.png)
[2] X Zhang, F Zabihi, H Xiong, et al. Highly efficient flexible perovskite solar cells made via ultrasonic vibration assisted room temperature cold sintering [J]. Chem Eng J, 2020, 394(12.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/7c93c780-549f-4fa0-8a44-b0e286a640c7.png)
[3] L Lu, H J Sun, Y T Zeng, et al. Perylene diimide derivativeviaionic self-assembly: helical supramolecular structure and selective detection of ATP [J]. J Mater Chem C, 2020, 8(30): 10422-30.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/162bf697-d347-4e70-9956-2fbd669cfa8a.png)
[4] Y Ge, F X Wen, H Kim, et al. 5G SLAM Using the Clustering and Assignment Approach with Diffuse Multipath [J]. Sensors, 2020, 20(16): 31.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/a7911e9d-ca9b-4323-a1c4-1ee3b323b2d4.png)
2020.9
[1] X Zhang, S S Lv, X C Lu, et al. Synergistic enhancement of coaxial nanofiber-based triboelectric nanogenerator through dielectric and dispersity modulation [J]. Nano Energy, 2020, 75(10.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/0fc52fbc-fc70-40b6-b9b2-60253bd9f54c.png)
[2] Q Li, A Balilonda, A Ali, et al. Flexible Solar Yarns with 15.7% Power Conversion Efficiency, Based on Electrospun Perovskite Composite Nanofibers [J]. Sol RRL, 2020, 4(9): 12.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/68148c28-9804-4057-910f-635a0d43f840.png)
[3] Q Q Wang, W J Ma, E Q Yin, et al. Melt Spinning of Low-Cost Activated Carbon Fiber with a Tunable Pore Structure for High-Performance Flexible Supercapacitors [J]. ACS Appl Energ Mater, 2020, 3(9): 9360-8.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/391bda15-b89d-429c-875a-ff6cad282bbe.png)
2020.10
[1] W Lyu, W Y Zhang, H Liu, et al. Conjugated Microporous Polymer Network Grafted Carbon Nanotube Fibers with Tunable Redox Activity for Efficient Flexible Wearable Energy Storage [J]. Chem Mat, 2020, 32(19): 8276-85.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/efba576b-8ad7-4085-8b1a-f818976e3e55.png)
[2] J Lu, R Wang, L Shen, et al. Enabling topical and long-term anti-radical properties for percutaneous coronary intervention-related complications by incorporating TEMPOL into electrospun nanofibers [J]. Science China-Materials, 14.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/e19e4bc5-72be-4553-8583-f13b8a1c37c3.png)
[3] G Y Xu, D W Yu, D C Zheng, et al. Fast Heat Transport Inside Lithium-Sulfur Batteries Promotes Their Safety and Electrochemical Performance [J]. Iscience, 2020, 23(10): 17.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/a025c254-c363-4901-a791-0432b2944c1a.png)
2020.12
[1] X G Luo, Y X Liang, W Weng, et al. Polypyrrole-coated carbon nanotube/cotton hybrid fabric with high areal capacitance for flexible quasi-solid-state supercapacitors [J]. Energy Storage Materials, 2020, 33(11-7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/43044b0c-eca8-41ba-b46f-e8c85eb1d51a.png)
[2] W J Ma, W F Li, M Li, et al. Scalable microgel spinning of a three-dimensional porous graphene fiber for high-performance flexible supercapacitors [J]. Journal of Materials Chemistry A, 2020, 8(47): 25355-62.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/c40da9f7-6127-4d72-84ef-bc3358fa09fa.png)
[3] P Geng, N Yu, J L Zhang, et al. One Responsive Stone, Three Birds: Mn(III)-Hemoporfin Frameworks with Glutathione-Enhanced Degradation, MRI, and Sonodynamic Therapy [J]. Advanced Healthcare Materials, 11.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/6e63dabe-062d-4300-b778-d5dd9c363fc3.png)
[4] J L Zhou, Q Q Zhu, W N Pan, et al. Thermal Stability of Bio-Based Aliphatic-Semiaromatic Copolyester for Melt-Spun Fibers with Excellent Mechanical Properties [J]. Macromolecular Rapid Communications, 7.
![](/_upload/article/images/af/24/80b2309a45bba0c670bbe3cba0af/fc120a97-2016-4840-a18a-5ad9e52797ff.png)