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18篇 您的检索式:作者名="Bechtold Thomas"
    题名 作者 年代 出处 被引量
1Spun-dyed Lyocell 显示文摘AVINASH Manian HARTMUT Ruef THOMAS Bechtold 2007Dyes and Pigments2007,74,3:1
2Fe3 + -D-gluconate and Ca2+- Fe3 +-D-gluconate complexes as mediators for indirect cathodic re- duction of vat dyes-cyclic vohammetry and batch electrolysis experi- ments显示文摘Thomas Bechtold Aurora Turcanu 2004Journal of Applied Electrochemistry2004,34,12:1
3Determination of reaction rate be- tween cathodically formed FelI-triethanolamine-complex and FclII- hepta-d-gluconate complex by cyclic veltammetry 显示文摘Thomas Bechtold Aurora Turcanu 2005Journal of E- lectroanalytical Chemistry2005,580,1:1
4Modification of cellulose fiber with silk seriein显示文摘ARUNEE Kongdse THOMAS Bechtold LINDA Teufe 2005Journal of Applied Polymer Science2005,,96:1
5Attenuated Total Reflectance Fourier-transform In- frared Spectroscopy Analysis of Crystallinity Changes in Lyocell Following Continuous Treatment with Sodi- um Hydroxide显示文摘JaSn iroky Richard S Blackburn Thomas Bechtold 2010Cellulose2010,17,1:1
6Electrochemical reduction invat dyeing: greener chemistry replaces traditional processes显示文摘Thomas Bechtold Aurora Turcanu 2009Journal of Cleaner Production2009,17,18:1
7Mod-ification of cellulose fiber with silk sericin显示文摘KONGDEE Arunee BECHTOLD Thomas TEUFEL Linda 2005Journal of Applied Polymer Science2005,96,4:1
8Effect of NaOH Treatment on the Interfibriilar Swelling and Dyeing Properties of Lyocell (TENCEL)Fibres显示文摘Hale Bahar Ozturk Thomas Bechtold 2007FIBRES & TEXTILES in Eastern Europe2007,15,56:1
9Anthocyanin dyes extracted from grape pomace for the purpose of textile dyeing 显示文摘Thomas Bechtold Amalid Mahmud-Ali Rita Mussak 2007Science of food and Agriculture2007,87,:1
10Influence of aqueous coatings on the stability of enteric coated pellets and tablets 显示文摘Thoma K Bechtold K 1999Eur J Pharm Biopharm1999,47,1:1
11Swelling and dissolution mechanism of regenerated cellulosic fibers in aqueow, alkaline solution containing ferric - tartaric aeid complex - Parl II : Modal fibers 显示文摘Vu Manh Hai Ozitirk Hale Bahar Bechtold Thomas 2010Carbohydrate Polymers2010,82,4:1
12Water accessibilities of man-made cellulosic fibers-effects of fiber characteristics显示文摘Satoko Okubayshi Ulrich J Griesser Thomas Bechtold 2005Cellulose2005,12,4:1
13Characterization of cellulosic fibers and fabrics by sorption/desorption显示文摘Barbora Siroka Michael Noisternig Ulrich J. Griesser Thomas Bechtold 2008Carbohydrate Research2008,,12:1
14Modification of cellulose fiber with silk sericin 显示文摘Arunee Kongdee Thomas Bechtold Linda Teufel 2005Journal of Applied Polymer Science2005,96,4:1
15Fe3+-Dgluconate and Ca2+-Fe3+--D-gluconate complexes as mediators for indirect cathodic reduction of vat dyes-Cyclic voltammetry and batch electrolysis experiments显示文摘Thomas Bechtold Aurora Turcanu 2004Journal of Applied Electrochemi stry2004,,34:1
16The develop- ment of indigo reduction methods and pre - reduced indigo products 显示文摘Richard S Blackburn Thomas Bechtold Philip John 2009Coloration Technology2009,125,4:1
17Modification of Cellulose Fiber with Silk Sericin显示文摘Arunee Kongdee Thomas Bechtold Linda Teufel 2005Journal of Applied Polymer Science2005,96,4:1
18Tunable colors and conductivity by electroless growth of Cu/Cu2O particles on sol-gel modified cellulose显示文摘Development of colored surfaces by formation of nano-structured aggregates is a widely used strategy in nature to color lightweight structures (e.g. butterflies) without the use of dye pigments. The deposition of nanoscale particles mimics nature in it’s approach coloring surfaces. This work presents sol-gel modification of cellulose surfaces used to form a template for growth of Cu/Cu2O core–shell particles with defined size-distributions. Besides improving the adhesion of the deposited particulate material, the sol-gel matrix serves as a template for the control of particle sizes of the Cu/Cu2O structures, and as a consequence of particle size variation the surface color is tunable. As an example, red color was achieved with an average particle size of 35 nm, and shifts gradually to blue appearance when particles have grown to 80 nm on the sol-gel modified fabric. The copper concentration on representative fabrics is kept low to avoid modifying the textile characteristics and were all in the range of 150–170 mg per g of cellulose material. As a result of copper deposition on the surface of the material, the cellulose fabric also became electrically conductive. Remarkably, the electrical conductivity was found to be dependent on the average particle sizes of the deposits and thus related to the change in observed color. The generation of color by growth of nano-sized particles on sol-gel templates provides a highly promising approach to stain surfaces by physical effects without use of synthetic colorants, which opens a new strategy to improve environmental profile of coloration.Justus Landsiedel Waleri Root Christian Schramm Alexander Menzel Steffen Witzleben Thomas Bechtold Tung Pham 2020Nano Research2020,13,10:0
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