Ordering In Bio Inorganic Hybrid Nanomaterials Probed By In Situ Scanning Transmission X Ray Microscopy PDF Download

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Ordering in Bio-inorganic Hybrid Nanomaterials Probed by in Situ Scanning Transmission X-ray Microscopy

Ordering in Bio-inorganic Hybrid Nanomaterials Probed by in Situ Scanning Transmission X-ray Microscopy
Author:
Publisher:
Total Pages: 10
Release: 2015
Genre:
ISBN:

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Here, phospholipid bilayer coated Si nanowires are one-dimensional (1D) composites that provide versatile bio-nanoelectronic functionality via incorporation of a wide variety of biomolecules into the phospholipid matrix. The physiochemical behaviour of the phospholipid bilayer is strongly dependent on its structure and, as a consequence, substantial modelling and experimental efforts have been directed at the structural characterization of supported bilayers and unsupported phospholipid vesicles; nonetheless, the experimental studies conducted to date have exclusively involved volume-averaged techniques, which do not allow for the assignment of spatially resolved structural variations that could critically impact the performance of the 1D phospholipid-Si NW composites. In this manuscript, we use scanning transmission X-ray microscopy (STXM) to probe bond orientation and bilayer thickness as a function of position with a spatial resolution of ~30 nm for [Delta]9-cis 1,2-dioleoyl-sn-glycero-3-phosphocholine layers prepared Si NWs. When coupled with small angle X-ray scattering measurements, the STXM data reveal structural motifs of the Si NWs that give rise to multi-bilayer formation and enable assignment of the orientation of specific bonds known to affect the order and rigidity of phospholipid bilayers.


Insights in Nanobiotechnology 2022/2023: Novel Developments, Current Challenges, and Future Perspectives

Insights in Nanobiotechnology 2022/2023: Novel Developments, Current Challenges, and Future Perspectives
Author: Gianni Ciofani
Publisher: Frontiers Media SA
Total Pages: 138
Release: 2023-12-12
Genre: Technology & Engineering
ISBN: 2832540066

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We are now entering the third decade of the 21st century, and, especially in the last years, the achievements made by scientists have been exceptional, leading to major advancements in the rapidly growing fields of bioengineering and biotechnology. This annual collection, which highlights article submissions from our Editorial Board members, looks to explore new insights, novel developments, current challenges, latest discoveries, recent advances, and future perspectives in the field of Nanobiotechnology. The Research Topic solicits brief, forward-looking contributions that describe the state of the art, outlining recent developments and major accomplishments that have been achieved and that need to occur to move the field forward. Authors are encouraged to identify the greatest challenges in the sub-disciplines, and how to address those challenges. The goal of this special edition Research Topic is to shed light on the progress made in the past decade and on its future challenges to provide a thorough overview of the nanobiotechnology field. This article collection will inspire, inform and provide direction and guidance to researchers. This collection is part of the 'Insights In' series which has been launched in each section of the journal. Other titles in the series include: Insights in Bioprocess Engineering 2022: Novel Developments, Current Challenges, and Future Perspective Insights in Biomaterials 2022: Novel Developments, Current Challenges, and Future Perspectives Insights In Biosafety & Biosecurity 2022: Novel Developments, Current Challenges, and Future Perspectives Insights in Biofabrication 2022: Novel Developments, Current Challenges, and Future Perspectives Insights in Tissue Engineering and Regenerative Medicine 2022 / 2023: Novel Developments, Current Challenges, and Future Perspectives Insights in Synthetic Biology 2022 / 2023: Novel Developments, Current Challenges, and Future Perspectives


Scanning Microscopy for Nanotechnology

Scanning Microscopy for Nanotechnology
Author: Weilie Zhou
Publisher: Springer Science & Business Media
Total Pages: 533
Release: 2007-03-09
Genre: Technology & Engineering
ISBN: 0387396209

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This book presents scanning electron microscopy (SEM) fundamentals and applications for nanotechnology. It includes integrated fabrication techniques using the SEM, such as e-beam and FIB, and it covers in-situ nanomanipulation of materials. The book is written by international experts from the top nano-research groups that specialize in nanomaterials characterization. The book will appeal to nanomaterials researchers, and to SEM development specialists.


Liquid Cell Electron Microscopy

Liquid Cell Electron Microscopy
Author: Frances M. Ross
Publisher: Cambridge University Press
Total Pages: 529
Release: 2017
Genre: Science
ISBN: 1107116570

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2.6.2 Electrodes for Electrochemistry


Transmission Electron Microscopy

Transmission Electron Microscopy
Author: C. Barry Carter
Publisher: Springer
Total Pages: 543
Release: 2016-08-24
Genre: Technology & Engineering
ISBN: 3319266519

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This text is a companion volume to Transmission Electron Microscopy: A Textbook for Materials Science by Williams and Carter. The aim is to extend the discussion of certain topics that are either rapidly changing at this time or that would benefit from more detailed discussion than space allowed in the primary text. World-renowned researchers have contributed chapters in their area of expertise, and the editors have carefully prepared these chapters to provide a uniform tone and treatment for this exciting material. The book features an unparalleled collection of color figures showcasing the quality and variety of chemical data that can be obtained from today’s instruments, as well as key pitfalls to avoid. As with the previous TEM text, each chapter contains two sets of questions, one for self assessment and a second more suitable for homework assignments. Throughout the book, the style follows that of Williams & Carter even when the subject matter becomes challenging—the aim is always to make the topic understandable by first-year graduate students and others who are working in the field of Materials Science Topics covered include sources, in-situ experiments, electron diffraction, Digital Micrograph, waves and holography, focal-series reconstruction and direct methods, STEM and tomography, energy-filtered TEM (EFTEM) imaging, and spectrum imaging. The range and depth of material makes this companion volume essential reading for the budding microscopist and a key reference for practicing researchers using these and related techniques.


Nanopharmaceuticals: Principles and Applications Vol. 3

Nanopharmaceuticals: Principles and Applications Vol. 3
Author: Vinod Kumar Yata
Publisher: Springer Nature
Total Pages: 340
Release: 2020-08-19
Genre: Technology & Engineering
ISBN: 3030471209

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This book is the third volume on this subject and focuses on the recent advances of nanopharmaceuticals in cancer, dental, dermal and drug delivery applications and presents their safety, toxicity and therapeutic efficacy. The book also includes the transport phenomenon of nanomaterials and important pathways for drug delivery applications. It goes on to explain the toxicity of nanoparticles to different physiological systems and methods used to assess this for different organ systems using examples of in vivo systems.


Fluorescent Nanodiamonds

Fluorescent Nanodiamonds
Author: Huan-Cheng Chang
Publisher: John Wiley & Sons
Total Pages: 294
Release: 2018-11-12
Genre: Science
ISBN: 1119477085

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The most comprehensive reference on fluorescent nanodiamond physical and chemical properties and contemporary applications Fluorescent nanodiamonds (FNDs) have drawn a great deal of attention over the past several years, and their applications and development potential are proving to be manifold and vast. The first and only book of its kind, Fluorescent Nanodiamonds is a comprehensive guide to the basic science and technical information needed to fully understand the fundamentals of FNDs and their potential applications across an array of domains. In demonstrating the importance of FNDs in biological applications, the authors bring together all relevant chemistry, physics, materials science and biology. Nanodiamonds are produced by powerful cataclysmic events such as explosions, volcanic eruptions and meteorite impacts. They also can be created in the lab by high-pressure high-temperature treatment of graphite or detonating an explosive in a reactor vessel. A single imperfection can give a nanodiamond a specific, isolated color center which allows it to function as a single, trapped atom. Much smaller than the thickness of a human hair, a nanodiamond can have a huge surface area that allows it to bond with a variety of other materials. Because of their non-toxicity, nanodiamonds may be useful in biomedical applications, such as drug delivery and gene therapy. The most comprehensive reference on a topic of rapidly increasing interest among academic and industrial researchers across an array of fields Includes numerous case studies and practical examples from many areas of research and industrial applications, as well as fascinating and instructive historical perspectives Each chapter addresses, in-depth, a single integral topic including the fundamental properties, synthesis, mechanisms and functionalisation of FNDs The first book published by the key patent holder with his research group in the field of FNDs Fluorescent Nanodiamonds is an important working resource for a broad range of scientists and engineers in industry and academia. It will also be a welcome reference for instructors in chemistry, physics, materials science, biology and related fields.


Visualizing Chemistry

Visualizing Chemistry
Author: National Research Council
Publisher: National Academies Press
Total Pages: 222
Release: 2006-06-01
Genre: Science
ISBN: 030916463X

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Scientists and engineers have long relied on the power of imaging techniques to help see objects invisible to the naked eye, and thus, to advance scientific knowledge. These experts are constantly pushing the limits of technology in pursuit of chemical imagingâ€"the ability to visualize molecular structures and chemical composition in time and space as actual events unfoldâ€"from the smallest dimension of a biological system to the widest expanse of a distant galaxy. Chemical imaging has a variety of applications for almost every facet of our daily lives, ranging from medical diagnosis and treatment to the study and design of material properties in new products. In addition to highlighting advances in chemical imaging that could have the greatest impact on critical problems in science and technology, Visualizing Chemistry reviews the current state of chemical imaging technology, identifies promising future developments and their applications, and suggests a research and educational agenda to enable breakthrough improvements.