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Silicon Versus Carbon

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Cover of 'Silicon Versus Carbon'

Table of Contents

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    Book Overview
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    Chapter 1 Is “Silicate Life” Possible?
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    Chapter 2 Nanocarbon Technologies: Prospects and Risks
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    Chapter 3 Advanced Environment Friendly Nanotechnologies
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    Chapter 4 Novel Environment Friendly Method of Preparing Nanoreinforced Composites Based on Metallic, Ceramic and Polymer Matrixes – Superdeep Penetration
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    Chapter 5 Sdp Technology for “Green” Technology of Metallic Reinforced Nanocomposites
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    Chapter 6 Substantiation of International Nanomaterials Security Group Creation
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    Chapter 7 Matter Structuring in Nano Scales and Fundamental Constants of Physics
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    Chapter 8 Size Evolution of Nanoclusters: Comparison Between the Phase Diagram and Properties of MO–S and Carbon Nanoparticles
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    Chapter 9 Nanomaterials Nexus in Environmental, Human Health, and Sustainability
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    Chapter 10 Nanotechnology and Quasicrystals: From Self-Assembly to Photonic Applications
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    Chapter 11 Oscillations of Polarized Charge in Solution of Salt in Polar Dielectric: Possible Application in Element and Isotope Separation in Biology and Nanotechnology
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    Chapter 12 On the Possible Influence of Resonance Conversion on Formation of the Organic Structures
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    Chapter 13 Field Driven Current in Nonlinear Low-Dimensional Nanosystems
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    Chapter 14 The Impact of Novel Technologies on the Environment Throughout History
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    Chapter 15 Nanotechnoscience as a Cluster of the Different Natural and Engineering Theories and Nanoethics
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    Chapter 16 Risk in Decision-Oriented and Self-Changing Society
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    Chapter 17 Technology-Induced Risks in History
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    Chapter 18 Nanotechnology: Perspective for Future and Nanorisks
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    Chapter 19 Evaluation of Sustainability of the Carbon and Silicon Ecosystem: From Nanoparticles to Macroworld
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    Chapter 20 Carbon Discs and Carbon Cones — New High Risk Materials for Nano-Sensors With Low Detection Limit and Fast Kinetics
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    Chapter 21 Biodynsensing: Sensing Through Dynamics of Hybrid Affinity/Cellular Platforms; Towards Appraisal of Environmental and Biological Risks of Nanobiotechnology
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    Chapter 22 Synthesis and Utilization of Hyperbranched Poly(Amino Acids) as Carriers of Biologically Active Substances: Problems and Solutions
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    Chapter 23 Biodegradable and Biocompatible Carbon-Chain Polymer–Protein Conjugates as Carriers of Biologically Active Substances: Problems of Synthesis, Risks of Application and How to Overcome Them
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    Chapter 24 Modern Risks of Anthropogenic Influence on Living Species: Nano-Level Fluctuation
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    Chapter 25 Application of Fulleroid Nano-Carbon In Sorption Techniques
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    Chapter 26 Aspects of Microparticle Utilization for Potentiation of Novel Vaccines: Promises and Risks
Attention for Chapter 21: Biodynsensing: Sensing Through Dynamics of Hybrid Affinity/Cellular Platforms; Towards Appraisal of Environmental and Biological Risks of Nanobiotechnology
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Chapter title
Biodynsensing: Sensing Through Dynamics of Hybrid Affinity/Cellular Platforms; Towards Appraisal of Environmental and Biological Risks of Nanobiotechnology
Chapter number 21
Book title
Silicon Versus Carbon
Published in
ADS, January 2009
DOI 10.1007/978-90-481-2523-4_21
Book ISBNs
978-9-04-812522-7, 978-9-04-812523-4
Authors

E. Gheorghiu, M. Gheorghiu, S. David, C. Polonschii, Gheorghiu, E., Gheorghiu, M., David, S., Polonschii, C.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Netherlands 1 9%
Unknown 10 91%

Demographic breakdown

Readers by professional status Count As %
Researcher 4 36%
Student > Postgraduate 2 18%
Student > Ph. D. Student 1 9%
Other 1 9%
Unknown 3 27%
Readers by discipline Count As %
Agricultural and Biological Sciences 2 18%
Environmental Science 1 9%
Mathematics 1 9%
Physics and Astronomy 1 9%
Chemistry 1 9%
Other 1 9%
Unknown 4 36%