Since most conductive polymers are -type, developing high-performance -type organic-inorganic composite thermoelectric (TE) fibers is a great challenge. Herein, poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS)-coated AgTe nanowires (PC-AgTe NWs) were prepared by a liquid-phase reaction using PEDOT:PSS-coated Te nanowires (PC-Te NWs) as templates, and the PEDOT:PSS/PC-AgTe NWs composite fibers were then prepared by wet spinning. As the content of PC-AgTe NWs increases, the composite fiber changes from -type to -type. The PEDOT: PSS coating greatly improves the dispersibility of AgTe NWs in the PEDOT: PSS matrix, resulting in an ultrahigh content of 87.5 wt % of PC-AgTe NWs in the composite fibers, which exhibited a Seebeck coefficient of -61.3 μV K and a power factor of 65.3 μW m K. The power factor value is higher than those of previously reported -type composite TE fibers. Contrary to the estimated thermal conductivity in other reports, in this work, the thermal conductivity of the composite fibers was measured via a transient photoelectrothermal (TPET) technique. In addition, the composite fiber has good tensile properties and mechanical strength, elongating at a break of 47.37% and a tensile stress of 6.59 MPa. For an application demonstration, a self-powered temperature sensor was assembled, which can utilize the vertical temperature difference between the human body and the environment and respond quickly to a small temperature difference.
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http://dx.doi.org/10.1021/acsnano.5c01168 | DOI Listing |
Trop Anim Health Prod
March 2025
Department of Animal Science, Federal University of Santa Maria, Santa Maria, Brazil.
The linseed processing was carried out on a laboratory scale to obtain the linseed protein concentrate (LPC), using the physical method. The analyzes were carried out on whole grains (WG), demucilated grains (DG) and LPC. In the fractions obtained, the chemical composition (dry matter, ash, lipids, crude protein, total dietary fiber, soluble fiber and insoluble fiber), total phenolic compounds and physicochemical properties were evaluated in the obtained fractions.
View Article and Find Full Text PDFAdv Mater
March 2025
Université de Bretagne Sud, IRDL UMR CNRS 6027, BIONICS group, Lorient, 56100, France.
Biological structures provide inspiration for developing advanced materials from sustainable resources, enabling passive structural morphing. Despite an increasing interest for parsimony-oriented innovation, sustainable shape-changing materials based on renewable resources remain underexplored. In this work, the architecture of a single plant fiber cell wall (S, for instance) is simplified to design novel concepts of 4D printed tubular moisture-driven structural actuators, using the hygromorphic properties of continuous flax fiber (cFF) reinforced materials.
View Article and Find Full Text PDFTraditionally, kapok fiber is employed as filling for soft pillows, bedding, and diverse elements. Due to its buoyancy and proportion between cell wall and lumen, it is also applied as buoyant material in life vests and insulation materials. This study examine slightweight insulation panels produced from kapok fibers.
View Article and Find Full Text PDFJ Biomed Opt
March 2025
Universität zu Lübeck, Institute of Biomedical Optics, Lübeck, Germany.
: Selective cryolipolysis is a widely used aesthetic procedure that cools subcutaneous adipose tissue to temperatures as low as to induce fat cell destruction. However, real-time monitoring techniques are lacking, limiting the ability to optimize safety and efficacy. Traditional imaging methods either fail to provide adequate penetration depth or lack the resolution necessary for visualizing subcutaneous fatty tissue dynamics.
View Article and Find Full Text PDFEvid Based Dent
March 2025
Edinburgh Dental Institute Paediatric Department 39x Lauriston Building, Edinburgh, UK.
A Commentary On: Fehrenbach J, de Soares J L S, do Nascimento Foly J C S, Miotti L L, Münchow E A Mechanical performance of endocrown restorations in anterior teeth: A systematic review and network meta-analysis. Dent Mater 2025; https://doi.org/10.
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