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Dissertation
Fluorescence techniques to detect and to assess viability of plant pathogenic bacteria.
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ISBN: 9058083896 Year: 2001 Publisher: Wageningen : Wageningen University,

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Dissertation
Evaluation de l'efficacité in vitro et in vivo du système lactoperoxydase sur les couples hôte-pathogène : Pseudomonas syringae pv. tomato, Clavibacter michiganensis subsp. michigansis
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Year: 2012 Publisher: [S.l. : chez l'auteur],


Book
Development of molecular methods for studies of virulence in clavibacter michiganensis subsp. sepedonicus
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ISBN: 9512917254 Year: 2000 Volume: 135 Publisher: Turku : Turun Yliopisto,

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Dissertation
L-fucose rich extracellular polysaccharides from Clavibacter and Klebsiella species : fermentation and rheological characterisation.
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Year: 1997 Publisher: Gent : Universiteit Gent. Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen,


Book
Gene expression and growth requirements of clavibacter xyli subspecies cynodontis
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ISBN: 9512915405 Year: 1999 Publisher: Turku : Turun Yliopisto,


Dissertation
Application of hordothionins and cecropin B for engineering bacterial disease resistance into plants.
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ISBN: 9054852801 Year: 1994 Publisher: Wageningen : Landbouwuniversiteit te Wageningen,


Book
Plasma based Synthesis and Modification of Nanomaterials
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ISBN: 3039213962 3039213954 Year: 2020 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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This book, entitled “Plasma-Based Synthesis and Modification of Nanomaterials” is a collection of nine original research articles devoted to the application of different atmospheric pressure (APPs) and low-pressure (LPPs) plasmas for the synthesis or modification of various nanomaterials (NMs) of exceptional properties. These articles also show the structural and morphological characterization of the synthesized NMs and their further interesting and unique applications in different areas of science and technology. The readers interested in the capabilities of plasma-based treatments will quickly be convinced that APPs and LPPs enable one to efficiently synthesize or modify differentiated NMs using a minimal number of operations. Indeed, the presented procedures are eco-friendly and usually involve single-step processes, thus considerably lowering labor investment and costs. As a result, the production of new NMs and their functionalization is more straightforward and can be carried out on a much larger scale compared to other methods and procedures involving complex chemical treatments and processes. The size and morphology, as well as the structural and optical properties of the resulting NMs are tunable and tailorable. In addition to the desirable and reproducible physical dimensions, crystallinity, functionality, and spectral properties of the resultant NMs, the NMs fabricated and/or modified with the aid of APPs are commonly ready-to-use prior to their specific applications, without any initial pre-treatments.

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