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A waterproof and breathable Cotton/rGO/CNT composite for

4.6 (505) · $ 19.00 · In stock

A waterproof and breathable Cotton/rGO/CNT composite for
Bioinspired Superhydrophobic and Durable Octadecanoic Acid/Ag  Nanoparticle-Decorated Rubber Composites for High-Performance Strain  Sensors

Bioinspired Superhydrophobic and Durable Octadecanoic Acid/Ag Nanoparticle-Decorated Rubber Composites for High-Performance Strain Sensors

Materials, Free Full-Text

Materials, Free Full-Text

Smart Textiles Testing: A Roadmap to Standardized Test Methods for Safety  and Quality-Control

Smart Textiles Testing: A Roadmap to Standardized Test Methods for Safety and Quality-Control

Yunjian GUO, PhD Student, Kwangwoon University, Seoul, Department  Electronics Convergence Engineering

Yunjian GUO, PhD Student, Kwangwoon University, Seoul, Department Electronics Convergence Engineering

Developing a highly-conductive and strength cotton yarn through dual shell  architecture of graphene for smart wearable devices - ScienceDirect

Developing a highly-conductive and strength cotton yarn through dual shell architecture of graphene for smart wearable devices - ScienceDirect

Progress in surface and interlayer distance modulated 2D Ti3C2 MXenes for  potential flexible supercapacitors: A review - ScienceDirect

Progress in surface and interlayer distance modulated 2D Ti3C2 MXenes for potential flexible supercapacitors: A review - ScienceDirect

Freestanding, flexible and interfused V2O5 nanowire/rGO composite fiber  nonwoven fabric for high-capacity binder-free aqueous zinc-ion batteries -  ScienceDirect

Freestanding, flexible and interfused V2O5 nanowire/rGO composite fiber nonwoven fabric for high-capacity binder-free aqueous zinc-ion batteries - ScienceDirect

Review on design strategies and applications of flexible cellulose‑carbon  nanotube functional composites - ScienceDirect

Review on design strategies and applications of flexible cellulose‑carbon nanotube functional composites - ScienceDirect

ZrCuSiAs型锰基化合物ThMnSbN中的化学压力效应

ZrCuSiAs型锰基化合物ThMnSbN中的化学压力效应

Caffeic acid induced in-situ growth of AgNWs on cotton fabric for  temperature and pressure sensing and electrical interference shielding -  ScienceDirect

Caffeic acid induced in-situ growth of AgNWs on cotton fabric for temperature and pressure sensing and electrical interference shielding - ScienceDirect

Wearable Resistive Strain Sensors

Wearable Resistive Strain Sensors