Advanced Fiber Materials (@materialsf85318) 's Twitter Profile
Advanced Fiber Materials

@materialsf85318

Advanced Fiber Materials(SCIE, IF 17.2, Q1), publishes papers in fibers and fiber-related devices and their applications.

ID: 1763492626479951872

linkhttps://link.springer.com/journal/42765 calendar_today01-03-2024 09:13:11

195 Tweet

50 Followers

231 Following

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Skin‑Inspired, Permeable, Structure‑Gradient Fiber Mats for Pressure Sensing in Rehabilitation Assistance 🧑‍🎓Jinxing Jiang et al. 🏫The Hong Kong Polytechnic University 🔗link.springer.com/article/10.100… #Textile electronics #Gradient structure #Pressure sensor #Rehabilitation monitoring

Skin‑Inspired, Permeable, Structure‑Gradient Fiber Mats for Pressure Sensing in Rehabilitation Assistance
🧑‍🎓Jinxing Jiang et al.
🏫The Hong Kong Polytechnic University
🔗link.springer.com/article/10.100…
#Textile electronics #Gradient structure #Pressure sensor #Rehabilitation monitoring
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Flexible Hierarchical Hollow SiC/SiOx Micro/nanofiber Sponges for Broadband Electromagnetic Wave Absorption 🧑‍🎓Mingyuan Yan et al. 🏫University of Science and Technology of China 🔗link.springer.com/article/10.100… #Hierarchical hollow structure #SiC sponges #Electromagnetic wave absorption

Flexible Hierarchical Hollow SiC/SiOx Micro/nanofiber Sponges for Broadband Electromagnetic Wave Absorption
🧑‍🎓Mingyuan Yan et al.
🏫University of Science and Technology of China
🔗link.springer.com/article/10.100…
#Hierarchical hollow structure #SiC sponges #Electromagnetic wave absorption
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Preparation, Structure and Application of Macroscopic Carbon Nanotube Helical Fibers 🧑‍🎓Yuanyuan Shang · Anyuan Cao et al 🏫Zhengzhou University & Peking University 🔗link.springer.com/article/10.100… #Carbon nanotube helical fiber #Artificial muscles #Sensors #Energy harvesting and storage

Preparation, Structure and Application of Macroscopic Carbon Nanotube Helical Fibers
🧑‍🎓Yuanyuan Shang · Anyuan Cao et al
🏫Zhengzhou University & Peking University
🔗link.springer.com/article/10.100…
#Carbon nanotube helical fiber #Artificial muscles #Sensors #Energy harvesting and storage
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Design of Flexible MXene/Graphene‑Based Fiber Fabrics for Broadband Electromagnetic Wave Absorption 🧑‍🎓Fanbin Meng et al. 🏫Southwest Jiaotong University et al. 🔗link.springer.com/article/10.100… #MXene/graphene-based fiber #Microwave-absorbing fabrics #Microwave absorption mechanism

Design of Flexible MXene/Graphene‑Based Fiber Fabrics for Broadband Electromagnetic Wave Absorption
🧑‍🎓Fanbin Meng et al.
🏫Southwest Jiaotong University et al.
🔗link.springer.com/article/10.100…
#MXene/graphene-based fiber #Microwave-absorbing fabrics #Microwave absorption mechanism
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Stretchable Fabric Organic Light‑Emitting Diodes Based on Transferable Laser Pattern for Wearable Photodiagnostic Applications 🧑‍🎓Yongmin Jeon et al. 🏫Gachon University & Kyung Hee University 🔗link.springer.com/article/10.100… #Organic light-emitting diodes #Kirigami #Photodiagnosis

Stretchable Fabric Organic Light‑Emitting Diodes Based on Transferable Laser Pattern for Wearable Photodiagnostic Applications
🧑‍🎓Yongmin Jeon et al.
🏫Gachon University & Kyung Hee University
🔗link.springer.com/article/10.100…
#Organic light-emitting diodes #Kirigami #Photodiagnosis
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Wrinkled Graphene Nanoscroll‑Fibers as a Support Platform to Encapsulate the CrFe‑Codoped Cobalt Nanoparticles for Robust Zn–Air Batteries 🧑‍🎓Xiuling Zhang et al 🏫Beijing University of Chemical Technology 🔗link.springer.com/article/10.100… #Durability #Rechargeable Zn–air battery

Wrinkled Graphene Nanoscroll‑Fibers as a Support Platform to Encapsulate the CrFe‑Codoped Cobalt Nanoparticles for Robust Zn–Air Batteries
🧑‍🎓Xiuling Zhang et al
🏫Beijing University of Chemical Technology
🔗link.springer.com/article/10.100…
#Durability #Rechargeable Zn–air battery
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Rational Construct of Extracellular Matrix Mimics via Peptide‑Co‑assembling Nanofibers for Efficient Bone Regeneration 🧑‍🎓Yazhou Chen et al. 🏫Zhengzhou University 🔗link.springer.com/article/10.100… #Co-assembly #Nanofibers #Mechanotransduction #Bone regeneration

Rational Construct of Extracellular Matrix Mimics via Peptide‑Co‑assembling Nanofibers for Efficient Bone Regeneration
🧑‍🎓Yazhou Chen et al.
🏫Zhengzhou University
🔗link.springer.com/article/10.100…
#Co-assembly #Nanofibers #Mechanotransduction #Bone regeneration
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Advances in Controllable Water Transport of Textile Porous Materials: Mechanism, Structure Design, Fabrication and Application 🧑‍🎓Wei Fan et al. 🏫Xi’an Polytechnic University et al. 🔗link.springer.com/article/10.100… #Controllable water transport materials #Hygroscopic mechanism

Advances in Controllable Water Transport of Textile Porous Materials: Mechanism, Structure Design, Fabrication and Application
🧑‍🎓Wei Fan et al.
🏫Xi’an Polytechnic University et al.
🔗link.springer.com/article/10.100…
#Controllable water transport materials #Hygroscopic mechanism
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Inner–Outer Surface Anchoring of Ultrafine Bi(Tri)‑Metallic Molybdates on N‑, B‑, and F‑Doped Hollow‑Core Carbon Nanofibers: 🧑‍🎓Ick Soo Kim et al. 🏫Shinshu University & Yeungnam University 🔗link.springer.com/article/10.100… #Heteroatoms #Metal molybdates #Synergism #Supercapacitors

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Lightweight, Flexible, Resilient PMIA‑Based Fabric with Superior Electromagnetic Shielding Performance 🧑‍🎓Rongjun Qu et al. 🏫Ludong University et al. 🔗link.springer.com/article/10.100… #Electrical conductivity #Electromagnetic interference shielding #Finite element simulation

Lightweight, Flexible, Resilient PMIA‑Based Fabric with Superior Electromagnetic Shielding Performance
🧑‍🎓Rongjun Qu et  al.
🏫Ludong University et al.
🔗link.springer.com/article/10.100…
#Electrical conductivity #Electromagnetic interference shielding #Finite element simulation
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Dynamic Pyrolysis of Silver‑Enhanced Conductive Porous Membranes: Mechanistic Insights into Electromagnetic Shielding, Joule Heating and Photothermal Efficiency 🧑‍🎓Wenhuan Huang 🏫Shaanxi University of Science and Technology 🔗link.springer.com/article/10.100… #Light-heat conversion

Dynamic Pyrolysis of Silver‑Enhanced Conductive Porous Membranes: Mechanistic Insights into Electromagnetic Shielding, Joule Heating and Photothermal Efficiency
🧑‍🎓Wenhuan Huang
🏫Shaanxi University of Science and Technology
🔗link.springer.com/article/10.100…
#Light-heat conversion
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Compressible Piezoelectric Ceramic Nanofiber Aerogels with Multifunction 🧑‍🎓Hui Wu et al. 🏫Qingdao University & Tsinghua University 🔗link.springer.com/article/10.100… #Barium titanate #Piezoelectric #Ceramic aerogels #Solution blow spinning #Nanofibers

Compressible Piezoelectric Ceramic Nanofiber Aerogels with Multifunction
🧑‍🎓Hui Wu et al.
🏫Qingdao University & Tsinghua University
🔗link.springer.com/article/10.100…
#Barium titanate #Piezoelectric #Ceramic aerogels #Solution blow spinning #Nanofibers
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Smart Polymer Fibers: Promising Advances in Microstructures, Stimuli-Responsive Properties and Applications 🧑‍🎓Jinsong Leng et al. 🏫Harbin Institute of Technology 🔗link.springer.com/article/10.100… #Smart polymer fibers #Microstructure #Stimuli-responsive properties #Applications

Smart Polymer Fibers: Promising Advances in Microstructures, Stimuli-Responsive Properties and Applications
🧑‍🎓Jinsong Leng et al.
🏫Harbin Institute of Technology 
🔗link.springer.com/article/10.100…
#Smart polymer fibers #Microstructure #Stimuli-responsive properties #Applications
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An All-Nanofiber-Based Customizable Biomimetic Electronic Skin for Thermal‑Moisture Management and Energy Conversion 🧑‍🎓Qufu Wei et al. 🏫Tianjin University & Jiangnan University 🔗link.springer.com/article/10.100… #Textile-based electronic #Body temperature visualization

An All-Nanofiber-Based Customizable Biomimetic Electronic Skin for Thermal‑Moisture Management and Energy Conversion
🧑‍🎓Qufu Wei et al.
🏫Tianjin University & Jiangnan University
🔗link.springer.com/article/10.100…
#Textile-based electronic #Body temperature visualization
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Reinforcement of C‑NFO@GDY Membranes via the Synergistic Effect of the Graphdiyne Honeycomb Nanostructure and Electronegativity 🧑‍🎓Dianzeng Jia et al. 🏫Xinjiang University 🔗link.springer.com/article/10.100… #Coal-based fiber membrane #Underwater superoleophobicity #Emulsion separation

Reinforcement of C‑NFO@GDY Membranes via the Synergistic Effect of the Graphdiyne Honeycomb Nanostructure and Electronegativity
🧑‍🎓Dianzeng Jia et al.
🏫Xinjiang University
🔗link.springer.com/article/10.100…
#Coal-based fiber membrane #Underwater superoleophobicity #Emulsion separation
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Robust Triboelectric E-Textile with Semi-bonded Bilayers for On-Skin Thermal Regulation and Self-Powered Motion Monitoring 🧑‍🎓Yunpeng Huang et al. 🏫Jiangnan University 🔗link.springer.com/article/10.100… #Wearable triboelectric nanogenerators #Passive radiative cooling

Robust Triboelectric E-Textile with Semi-bonded Bilayers for On-Skin Thermal Regulation and Self-Powered Motion Monitoring
🧑‍🎓Yunpeng Huang et al.
🏫Jiangnan University
🔗link.springer.com/article/10.100…
#Wearable triboelectric nanogenerators #Passive radiative cooling
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An Artificial Piezoelectric-Conductive Integrated Peri-Implant Gingiva Enables Efficient Bacterial Inhibition and Soft-Tissue Integration 🧑‍🎓Shengcai Qi et al. 🏫Fudan University 🔗link.springer.com/article/10.100… #MXene #Electrical stimulation #Implant-associated infections

An Artificial Piezoelectric-Conductive Integrated Peri-Implant Gingiva Enables Efficient Bacterial Inhibition and Soft-Tissue Integration
🧑‍🎓Shengcai Qi et al.
🏫Fudan University
🔗link.springer.com/article/10.100…
#MXene #Electrical stimulation #Implant-associated infections
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One-Step Manufacture and Crosslinking of Gelatin/Polygonum sibiricum Polysaccharide Bioactive Nanofibrous Sponges for Rapid Hemostasis and Infected Wound Healing 🧑‍🎓Tong Wu et al. 🏫Qingdao University 🔗link.springer.com/article/10.100… #Nanofibrous sponge #Hemostasis #Antibacterial

One-Step Manufacture and Crosslinking of Gelatin/Polygonum sibiricum Polysaccharide Bioactive Nanofibrous Sponges for Rapid Hemostasis and Infected Wound Healing
🧑‍🎓Tong Wu et al.
🏫Qingdao University
🔗link.springer.com/article/10.100…
#Nanofibrous sponge #Hemostasis #Antibacterial
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Fiber Materials for Applications of Electromagnetic Wave Absorption 🧑‍🎓Qiaochu Chen · Yue Wang · Yongkang Xiong · Huawei Hu · Nan Meng · Yaozu Liao 🏫Donghua University 🔗link.springer.com/article/10.100… #Electromagnetic wave absorption #Impedance matching #Dielectric loss #Magnetic loss

Fiber Materials for Applications of Electromagnetic Wave Absorption
🧑‍🎓Qiaochu Chen · Yue Wang · Yongkang Xiong · Huawei Hu · Nan Meng · Yaozu Liao
🏫Donghua University
🔗link.springer.com/article/10.100…
#Electromagnetic wave absorption #Impedance matching #Dielectric loss #Magnetic loss
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Nanofiber-Based Superskin for Augmented Tactility 🧑‍🎓Yingying Zhang et al. 🏫Tsinghua University 🔗link.springer.com/article/10.100… #Augmented-tactility #Electronic skin #Textile electronics #Electrospun nanofibers #Smart wearables

Nanofiber-Based Superskin for Augmented Tactility
🧑‍🎓Yingying Zhang et al.
🏫Tsinghua University
🔗link.springer.com/article/10.100…
#Augmented-tactility #Electronic skin #Textile electronics #Electrospun nanofibers #Smart wearables