Search Results - "Wu, Zhuotong"
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Bacterial cellulose nanofiber distribution on gelatin and silk fibroin scaffolds and the cell behavior
Published in Cellulose (London) (2021)“…This paper presents a simple strategy to adjust bacterial cellulose (BC) nanofiber distribution on the biomimetic 3D scaffolds by in situ bacteria culture on…”
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Hierarchically Designed Three-Dimensional Composite Structure on a Cellulose-Based Solar Steam Generator
Published in ACS applied materials & interfaces (16-03-2022)“…The emerging water purification technology represented by solar water evaporation has developed rapidly in recent years and is widely used in seawater…”
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Comprehensive analysis on the thermal comfort of various greening forms: a study in hot-humid areas
Published in Environmental Research Communications (01-02-2024)“…Abstract The potential impact of greening on improving thermal environments is widely recognized. However, few studies have comprehensively evaluated the…”
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TEMPO-Oxidized Bacterial Cellulose Nanofibers/Graphene Oxide Fibers for Osmotic Energy Conversion
Published in ACS applied materials & interfaces (19-05-2021)“…The large osmotic energy between river water and seawater is an inexhaustible blue energy source; however, the complicated manufacturing methods used for…”
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Advanced Bacterial Cellulose Ionic Conductors with Gigantic Thermopower for Low-Grade Heat Harvesting
Published in Nano letters (26-10-2022)“…Ionic conductors such as polymer electrolytes and ionic liquids have high thermoelectric voltages several orders of magnitude higher than electronic…”
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A 3D-printable TEMPO-oxidized bacterial cellulose/alginate hydrogel with enhanced stability via nanoclay incorporation
Published in Carbohydrate polymers (15-06-2020)“…•The nanocomposite printing ink exhibited excellent printability for complexity and high shape fidelity.•Nanoclay can effectively improve the stability of the…”
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Oppositely charged aligned bacterial cellulose biofilm with nanofluidic channels for osmotic energy harvesting
Published in Nano energy (01-02-2021)“…The reverse electrodialysis (RED) is one of the most promising approaches for osmotic energy harvesting. Recently, the RED devices based on nanofluidic…”
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Polypyrrole@TEMPO-oxidized bacterial cellulose/reduced graphene oxide macrofibers for flexible all-solid-state supercapacitors
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (15-07-2019)“…[Display omitted] •TOBC nanofibers are used as “spacer” in rGO sheets and mechanical buffer layer in macrofibers.•The highly-winkled TOBC/rGO fibers has high…”
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Top-down peeling bacterial cellulose to high strength ultrathin films and multifunctional fibers
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (01-07-2020)“…•BC nanofiber alignment was achieved via a simple one-step solvent-assisted drawing.•It is the first time to realize the peeling of BC film layer by layer to…”
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Stretchable and Durable Bacterial Cellulose-Based Thermocell with Improved Thermopower Density for Low-Grade Heat Harvesting
Published in Nano letters (22-11-2023)“…Low-grade heat exists ubiquitously in the environment, and gel-state thermogalvanic cells (GTCs) can directly convert thermal energy into electricity by a…”
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A strategy of tailoring polymorphs and nanostructures to construct self-reinforced nonswelling high-strength bacterial cellulose hydrogels
Published in Nanoscale (15-08-2019)“…A serious decline in mechanical properties of polysaccharide hydrogels caused by swelling has always been a difficult problem which greatly limited their…”
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Insights into Hierarchical Structure–Property–Application Relationships of Advanced Bacterial Cellulose Materials
Published in Advanced functional materials (01-03-2023)“…Bacterial cellulose (BC) is an environmentally friendly biomaterial that is widely investigated because it possesses a unique hierarchical nanofiber network…”
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Toward continuous high-performance bacterial cellulose macrofibers by implementing grading-stretching in spinning
Published in Carbohydrate polymers (15-04-2022)“…At present, the orderly assembly of bio-cellulose nanofibers (CNFs) with excellent mechanical properties in a simple and continuous manner still remains a…”
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High-Strength Superstretchable Helical Bacterial Cellulose Fibers with a "Self-Fiber-Reinforced Structure"
Published in ACS applied materials & interfaces (13-01-2021)“…As a hydrogel membrane grown on the gas-liquid interface by bacterial culture that can be industrialized, bacterial cellulose (BC) cannot give full play to the…”
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Scalable bacterial cellulose biofilms with improved ion transport for high osmotic power generation
Published in Nano energy (01-10-2021)“…The manufacture of large-sized material with tunable nanochannel size and high ion selectivity is always a challenge for osmotic power generation. Herein, we…”
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Crack-Based Core-Sheath Fiber Strain Sensors with an Ultralow Detection Limit and an Ultrawide Working Range
Published in ACS applied materials & interfaces (29-06-2022)“…With the booming development of flexible wearable sensing devices, flexible stretchable strain sensors with crack structure and high sensitivity have been…”
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Molecular self-assembled cellulose enabling durable, scalable, high-power osmotic energy harvesting
Published in Carbohydrate polymers (01-03-2024)“…In recent years, renewable cellulose-based ion exchange membranes have emerged as promising candidates for capturing green, abundant osmotic energy. However,…”
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Wearable Device with High Thermoelectric Performance and Long-Lasting Usability Based on Gel-Thermocells for Body Heat Harvesting
Published in Small (Weinheim an der Bergstrasse, Germany) (17-09-2024)“…Utilizing the thermogalvanic effect, flexible thermoelectric materials present a compelling avenue for converting heat into electricity, especially in the…”
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Salinity power generation based biocompatible bacterial cellulose/MXene membrane for biological power source
Published in Nano energy (01-11-2022)“…Powering implanted medical devices (IMDs) is still a challenge since the biological system requires biocompatible, stable, and miniaturized electrical power…”
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