Stephen J. Eichhorn
University of Bristol
188 Papers
1K Citations
Stephen J. Eichhorn is an academic researcher from University of Bristol. The author has contributed to research in topics: Cellulose & Raman spectroscopy. The author has an hindex of 45, co-authored 172 publications. Previous affiliations of Stephen J. Eichhorn include University of Manchester & Case Western Reserve University.
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Papers
Review: current international research into cellulose nanofibres and nanocomposites
Stephen J. Eichhorn,Alain Dufresne,Mirta Ines Aranguren,Norma Esther Marcovich,Jeffrey B. Capadona,Stuart J. Rowan,Christoph Weder,Wim Thielemans,Maren Roman,Scott Renneckar,Wolfgang Gindl,Stefan Veigel,Jozef Keckes,Hiroyuki Yano,Kentaro Abe,Masaya Nogi,Antonio Norio Nakagaito,A. Mangalam,John Simonsen,A. S. Benight,Alexander Bismarck,Lars Berglund,Ton Peijs +22 more
TL;DR: An overview of recent progress in the area of cellulose nanofibre-based nanocomposites is given in this article, with particular emphasis on applications, such as reinforced adhesives, to make optically transparent paper for electronic displays, to create DNA-hybrid materials, to generate hierarchical composites and for use in foams, aerogels and starch nanocom composites.
Review: Current international research into cellulosic fibres and composites
Stephen J. Eichhorn,Caroline Baillie,N. E. Zafeiropoulos,L. Y. Mwaikambo,Martin P. Ansell,Alain Dufresne,K. M. Entwistle,Pedro J. Herrera-Franco,G.C. Escamilla,Leslie H. Groom,Mark Hughes,Callum A. S. Hill,Timothy G. Rials,P.M. Wild +13 more
TL;DR: In this article, the authors summarise a number of international research projects being undertaken to understand the mechanical properties of natural cellulose fibres and composite materials, in particular the use of novel techniques, such as Raman spectroscopy, synchrotron x-ray and half-fringe photoelastic methods of measuring the physical and micromechanical properties.
Elastic modulus and stress-transfer properties of tunicate cellulose whiskers.
TL;DR: Measurements of the elastic modulus of tunicate cellulose using a Raman spectroscopic technique show that the tunicate sample is a two-dimensional in-plane random network of fibers, and the modulus is very high, at about 143 GPa.
956
Structure-property-function relationships of natural and engineered wood
Chaoji Chen,Yudi Kuang,Shuze Zhu,Ingo Burgert,Ingo Burgert,Tobias Keplinger,Tobias Keplinger,Amy Gong,Teng Li,Lars Berglund,Stephen J. Eichhorn,Liangbing Hu +11 more
TL;DR: In this article, the authors provide a materials and structural perspective on how wood can be redesigned via structural engineering, chemical and/or thermal modification to alter its mechanical, fluidic, ionic, optical and thermal properties.
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Current characterization methods for cellulose nanomaterials
E. Johan Foster,Robert J. Moon,Umesh P. Agarwal,Michael J. Bortner,Julien Bras,Sandra Camarero-Espinosa,Kathleen J. Chan,Martin J. D. Clift,Emily D. Cranston,Stephen J. Eichhorn,Douglas M. Fox,Wadood Y. Hamad,Laurent Heux,Bruno Jean,Matthew Korey,Kimberly J. Ong,Michael S. Reid,Scott Renneckar,Rose Roberts,Jo Anne Shatkin,John Simonsen,Kelly L. Stinson-Bagby,Nandula D. Wanasekara,Jeffrey P. Youngblood +23 more
TL;DR: This review establishes detailed best practices, methods and techniques for characterizing CNM particle morphology, surface chemistry, surface charge, purity, crystallinity, rheological properties, mechanical properties, and toxicity for two distinct forms of CNMs: cellulose nanocrystals and cellulose Nanofibrils.