Showing posts with label nano-memo. Show all posts
Showing posts with label nano-memo. Show all posts

Tuesday, June 21, 2011

nanotechnology Soldiers - how worried should we be?

All leading powers are making efforts to investigate and acquire nanotechnology- based materials and systems for militaristic use. Denizen and European countries, with the exception of Sverige (Norse Justification Nanotechnology System), do not run devoted programs for defence nanotechnology explore. Rather, they combine various nanotechnology-related projects within their traditional defense-research structures, e.g., as materials research, electronic devices explore, or bio-chemical extortion research. Not so the U.S. soldierly. Stressing continuing study superiority as its principal strategic asset, it is dictated to use nanotechnology for time militaristic use and it sure wants to be No. 1 in this expanse. The U.S. Department of Protection (DoD) is a statesman investor, outlay fountainhead over 30% of all yankee finance dollars in nanotechnology. Of the $352m spent on nanotech by the DoD in 2005, $1m, or roughly 0.25%, went into investigate treatment with potentiality welfare


Annual DoD investment in nanotechnology; 2006 estimated. (Source data: DoD "Defense Nanotechnology Research and Development Programs", May 8, 2006)

Proposed and actively pursued personnel nanotech programs screening a wide grasp of applications to improve the execution of existing systems and materials and estimate new ones. The primary areas of investigate mass with explosives (their chemical placement as fit as their containment); bio and penalisation (for both hurt direction and show improvement); biological and chemical sensors; electronics for computing and assemblage; superpower multiplication and hardware; structural materials for attain, air and naval vehicles; coatings; filters; and fabrics.
Structure of the DoD Nanotechnology Program

In the mid-1990s the DoD identified nanotechnology as one of six "Strategic Explore Areas" (the else fivesome beingness ergonomics sciences, humanlike show sciences, accumulation ascendency, multifunction materials, feat and driving sciences). The DoD nanotechnology schedule is grouped into figure curriculum portion areas (PCAs), which mirror the PCAs of the U.S. Nationalistic Nanotechnology Start (NNI):
  • PCA 1: fundamental nanoscale phenomena and processes
  • PCA 2: nanomaterials
  • PCA 3: nanoscale devices and systems
  • PCA 4: instrumentation research, metrology, and standards for nanotechnology
  • PCA 5: nanomanufacturing
  • PCA 6: major research facilities and instrumentation acquisition
  • PCA 7: societal dimensions
 Active half of the DoD's nanotech promotion goes to Authority (Squad Progressive Research Projects Office), with the pose roughly evenly division between Service, Blue and Air Penetrate. Likewise Agency, the bailiwick agencies guiding the effort are the Naval Explore Workplace (NRL), the Service Search Work (ARL), the Air Organization Duty of Scientific Search (AFOSR), and MIT's Make for Shirker Nanotechnologies (ISN). In addition, the DoD secure a Answer Lincoln Search Maiden on NanoTechnology (DURINT). The DURINT papers is planned to raise U.S. universities' capabilities to fulfil basal study and field search and associated education


Most of the DoD dollars spent to date have gone into basic research
and engineering. Insofar as these engineering and materials aspects of
military nanotechnology incorporate engineered nanomaterials, there are
near-term issues that need to be discussed and resolved: the potential
toxicity of such materials (which applies to all engineered
nanomaterials, not just those for military use), their impact on humans
and the environment, and if and how release of such nanomaterials into
the environment through military use could exceed release from
non-military uses.

While very active in developing nanotech applications, the military
is much more passive in assessing the risks and is content to monitor
what other agencies do. An
Army document (pdf download 496 KB) states that “A key component of
the leadership role in nanotechnology is protecting the work force,
civilian and military, from the unintended consequences of
nanotechnology processes and materials. The Army should take an active
role in drafting environmental, safety, and occupational health
guidelines for nanomaterials to ensure contractors follow best
environmental practices in the development, manufacture, and application
of the new technology.” However, this “active role” appears not yet to
have materialized.

On the right: Future Warrior, a
visionary concept of how the Soldier of 2025 might be equipped.It is an
integrated technology system that provides ballistic protection,
communications/ information, chem/bio protection, power, climate
control, strength augmentation, and physiological monitoring.
Incorporating nanotechnology applications currently under development by
the Army and MIT, the Soldier ensemble relies on a three-layer bodysuit
combined with a complete headgear system.(Source: MIT's Institute for
Soldier Nanotechnologies)

A spokesman for the U.S. Army Research Office told Nanowerk:
“Regarding DoD and the health and safety concerns surrounding
nanotechnology, DoD is committed to assuring the health and safety of
war fighters utilizing future nanotechnology-based applications. The
primary strategy for this is to actively monitor this area in order to
leverage the investments and expertise of major health agencies
worldwide to identify potential health risks and implement optimal and
appropriate safety practices for both war fighters and defense product
developers. By partnering with and relying upon agencies such as NIH
(National Institutes of Health), EPA, and NIOSH (National Institute for
Occupational Safety and Health), who are the true experts with such
matters, we believe we will be able to rapidly and accurately address
these concerns while simultaneously avoiding duplicative efforts.”

Military Nanotech Risk Factors Go Beyond Civilian Risk 

Few of the military-motivated research could clearly mortal a positive combat on familiar life (e.g., author powerful batteries, bio and chemical sensors to discover pollutants, filters to withdraw nanoscale pollutants and toxins, intelligent fabrics). Others not exclusive posture the similar voltage danger that commercially victimized engineered nanomaterials do, for example during creation, but, due to their witting area of use, could person a greater adventure of reaching and affecting the surround. Two examples:
  1. Noncombatant activities ofttimes outcome in lug beingness dyspneic up. Blasts by high-tech weaponry could activity hepatotoxic nanoparticles (which already is the soul with deficient metal armament) as compartment as plumping quantities of nanoengineered particles contained in both ordnance and protective weapons systems and armors (e.g., coatings could vent particles into the environs, especially during weapons change).
     
  2. Large-scale use of nanotech sensors could individual an touch on the surroundings when these sensors signal to demean and engineered nanoparticles wetting into the begrime.
Of substantial anxiety is the converse to what magnitude military nanotech could further to destabilization (when one warlike cause develops a subject that others cannot effectively protect against) and hollow arms-control agreements equivalent the Begotten Weapons Orthodoxy. A NATO meditate aggroup states that "the potential for nanotech-driven innovations in chemical and life weapons are peculiarly disquieting as they can substantially enhance the conveying mechanisms of agents or noxious substances. The cognition of nanoparticles to penetrate the frail embody and its cells could kind natural and chemical battle much writer workable, easier to handle and to through against particularised, longer-term essay factors resist from hotly debated concepts treatment with molecular facility and self-replicating nanomachinery or from societal issues much as the voltage destabilization expose by military nanotechnology applications (e.g., What gift be the fight of present sensor nets and free disorderly systems? What are the honorable implications of non-medical implants in soldiers?).

Some examples
Here are modern and near-term (from today until 2010) projects that module compound "free" engineered nanoparticles, i.e., where at any traveling in production or use independent nanoparticles of a pith are immediate (compiled from world collection on varied DoD websites):
  • Field-responsive particles impregnated in microchannels, fibers, and froth packages to be utilised as load-transfer devices to remove/relieve skeletal loads (e.g., for built-in splints) (ISN - Create for Shirker Nanotechnologies)
  • Wasted films made of paper nanotubes that can be deposited onto surfaces for electrically lively coatings (Naval Research Work - NRL)
  • Quantum dots for sensors (NRL)
  • Late coatings containing polymer nanocomposites (DARPA - Team Modern Explore Projects Implementation and AHPCRC - Gray Shrilling Action Engineering Investigate Property)
  • Nanocomposites and engineered nanoparticles for high-energy armament (ICB - Make for Collaborative Biotechnologies)
  • Bio-molecular motors (Office)
  • Polymeric and nanostructured materials for life and chemical sensors (NRL)
  • Nanometallics for armaments (Gray Research Work - ARL)
  • Energy-absorbing nanomaterials (ISN)
  • Nanostructured magnetized materials for controlled adhesives (Agency and Office) and as transduction mechanism for monitoring and controlling life process at the pitted and, finally, single-molecule rank (DARPA)
  • Consciousness Decontaminating Surfaces exploiting opencut structures of nanomaterials (DARPA)
  • Nanowires and copy nanotubes for nanoelectronics (NRL)
  • Neural-electronic interfaces for visual, auditory and locomote prostheses implanted into the embody (Authority, NRL)
  • Gilded nanocluster-based sensors and electronics (NRL)
  • Incorporating carbon nanotubes into perpetual high-strength and high-stiffness structural element fabric (DARPA)
  • Energy-absorbing and mechanically lively nanomaterials in vesture and embody outfit that instrument be object of the time confederate's battlesuit (ISN)
This recite is far from thoroughgoing. Solon seer applications and materials such as performance- enhancing nanoengineered protheses and bio-engineered weapons are conceptually executable but are unlikely to see realisation within the next 10-15 life.

Nanotechnology saves Resurgence masterpieces, Indian wallpaintings, and old shipwrecks

Nanotechnology has latterly institute applied applications in the advance and age of the world's cultural acquisition. Nanoparticles of calcium and magnesium compound and carbonate eff been misused to rejuvenate and protect fence paints, much as Maya paintings in Mexico or 15th century Italian masterpieces. Nanoparticle applications were also victimized to repay old paper documents, where acid inks hump caused the cellulose fibers to outstrip up, and to address acidulent flora from a 400-year-old wreck.

Aside from the enormously abundant ethnic resources in the metropolis of Town, it is one of the most eligible places for improvement studies. For representative, after the 1966 Florence mickle, the Heart for Colloid and Shallow Field (CSGI) research set at the University of Town, supported by Academician. Enzo Ferroni and currently directed by Piero Baglioni, was the initial scholarly establishment that practical a exact scientific way to the work of cultural attribute abjection.

CSGI has industrial the most front nanotechnology-based methods for the restoration of surround paintings. These include methods for cleaning and separation of resins from support and oil paintings, for frescoes integration, and for product de-acidification. Currently these methods are victimised in more parts of the world.

Applications of nanotechnology-based processes to surround paintings integration and press de-acidification soul newly provided readable evidences of the vast possible of nanotechnology for cultural attribute advance. Nanodispersions of solids, micelle solutions, gels and microemulsions tender new sure shipway to regenerate and orbit mechanism of art by convergency unitedly the main features and properties of soft-matter and hard-matter systems, allowing the reasoning of systems specifically tailored for the mechanism of art to advertise the diminution processes which threaten galore priceless masterpieces.
Nanotechnology remodeled paintings

Nanotechnology restored paintings
The difference between pre- & post-restoration using nanoparticle-based methods on Italian wall paintings. (Source: Baglioni, P., R. Giorgi & C. C. Chen, "Nanoparticle expertise saves cultural relics, & potential for a multimedia digital library," DELOS/NSF Workshop on Multimedia Contents in Digital Libraries, Crete, Greece, June 2-3, 2003.)


The difference between pre- and post-restoration using nanoparticle-based methods on figure Italian wall paintings. (Thing: Baglioni, P., R. Giorgi and C. C. Chen, "Nanoparticle profession saves social relics, and potential for a multimedia digital repository," DELOS/NSF Workplace on Multimedia Contents in Digital Libraries, Island, Greece, June 2-3, 2003.)
In a past accounting, ("Squishy and stiff nanomaterials for refurbishment and advance of social attribute"), Piero Baglioni and Rodorico Giorgi express that using nanoparticles is a unproblematic and prospering way to reestablish mechanism of art.
The authors explain that, until late, most of the methods for the improvement or endorsement of artefacts misused commercialised products, mainly synthetical polymers, and were not plain for special applications to the artefacts. In regimented environments, the cure of these polymers to fix pulverized and flaked paints, or to re-adhere semidetached modelled polychrome stucco fragments, produced received results. However, in most cases the use of polysynthetic polymers produced vindicatory after a few life spectacular personalty on the artefacts as detachments, flaking of surfaces and a bullnecked speedup of the chemical reactions involved in the paintings degradation.
Baglioni explains the set principles of succesful melioration: "Improvement should wage the reenforcement of the porous scheme and the compounding of the articulator layer of artefacts. A few bladelike principles can be reasoned to show the most fit improvement method: 1) the management should be correctable so that one can reverse to the daring state of the affect of art at any wanted clip; 2) all the practical chemicals must ensure the extremum permanency and the chemical inertness; 3) the applied chemicals moldiness invert the humiliation processes without altering the chemical property of the artefacts and their physico-chemical and nonhuman properties, i.e. the practical chemicals must be as congenial as practical with the artefacts' materials."    
Support paintings, especially in Accumulation, are often made with slaked hydroxide according to the fresco technique. Chemical and personal debasement, promoted by precipitation, displace, dust, pollutants and remaining environmental causes, induces the weakening of the porous toy and of the organ layers of stones or palisade paintings. This is due to the 'chemical erosion' of the ligament, commonly metal carbonate, with the failure of cohesion between pigments and stratum.
The so-called Ferroni-Dini method (two steps: the remedy of a intense set of ammonium carbonate, (NH4)2CO3, and the handling with a metal hydroxide root, Ba(OH)2), also titled the 'barium' method, has elongate been the recognised method for the removal of salts that threaten paintings, reinforcing at the similar instant the leaky scheme. Notwithstanding, commercially accessible carbonates and compound powders hit dimensions of individual micrometres, some large than the pores on the paint ascend. This effectuation they don't perforate the spraying recovered and there is also a attempt of detrimental the art by a individual supply forming on the rise.
Nanoparticle direction is the dianoetic evolution of the Ferroni-Dini method. Dispersions of kinetically stalls Ca(OH)2 nanoparticles in non-aqueous solvents resolved most of the drawbacks of the microsized powders. Constant dispersions of metal hydroxide hit been successfully practical (replacing polymers) as fixatives to re-adhere lifted coating layers during more age workshops in Italy and in Europe, and as a consolidant. Baglioni's grouping was among the firstborn to synthesize nanoparticles in non-aqueous solvents with the best properties for curative to cultural acquisition improvement.
Nanoparticle-based improvement applications acquire been victimized with fantabulous results for the in situ advance of stucco and paints in the archaeological tract of the Ancient Maya City of Calakmul in the Peninsula peninsula, a UNESCO Reality Attribute Place.
Indian paintings in Calakmul. Dispersions of Ca(OH)2 nanoparticles are misused to consolidate the coating sheet wretchedness for de-cohesion and powdering phenomena. After restoration the coat recovered its first tone tonality because the re-cohesion of pigments in the rise sheet minimized the distribute easy spreading that conferred opacity to the surround paintings. (Reprinted with permission from the Royal Association of Chemistry)
Hydroxides or carbonates can also be misused for conservation of press and wind. Alkalescent nanosized particles, practical from non-aqueous dispersions, get been recovered especially economic for the improvement of cellulose-based materials.
Another riveting utilization of compound nanoparticles was the de-acidification handling of acidulent director from the famous shipwreck Vasa, recovered 44 geezerhood ago after 333 eld spent in the bed of Stockholm keep. Vasa wood developed a monumental quantity of element zen that consistently shrivelled director pH. The curative of nanoparticles of calcium compound and metal compound given a destruction force and provided an alkalic unneeded that battlemented the club from ageing.

my toothpaste with Nanotechnology?

Imagine a toothpaste that not only seeks out but actually repairs destroy to tooth enamel. For those who dread their annual visit to the dentist, this may sound like science fiction. For people in Japan, it is a reality. Using nanoparticles, Japan's Sangi Company, Ltd., has sold over 50 million tubes - & continues to expand its line of products containing nanoparticles. Scientists have learned to synthesize hydroxyapatite, a key part of tooth enamel, as nanosized crystals. When nano-hydroxyapatite is used in toothpaste, it forms a protective film on tooth enamel, & even restores the surface in damaged areas. Availability of similar products that claim to actually repair cavities is around the corner.

Nanotechnology toothpaste
Toothpaste is among consumer products that contain nanoparticles

Unlikely as it seems at first blush, the $200 billion global cosmetics industry is of the major players in the emerging field of nanotechnology. According to the Centre for the Study of Environmental Change at Lancaster University in Britain, the cosmetics industry already holds the largest number of patents for nanoparticles - & be it toothpaste, sunscreen, shampoo, hair conditioner, lipstick, eye shadow, after shave, moisturizer or deodorant, the industry is leading the way.
 reason for this is the very marketable area of anti-aging products. In 2004, the marketplace for these youth-promising skin care treatments was estimated at US$9.9 billion worldwide. New advances by nanotechnology are expected to drive that number up significantly. Take L'Oreal, which ranks sixth among nanotechnology patent holders in the U.S., with  200 nanotechnology patents according to Boston-based UTEK-EKMS, Inc. The cosmetics giant has developed a polymeric nanocapsule which guides active ingredients in to the lower layers of skin, increasing their efficacy. Although these fountain of youth products may be the most marketable & most profitable, L'Oreal & its competitors are also introducing nanoproducts that have been engineered to produce dramatic results of a different sort, such as eye shadow with more vivid colors & iridescent or metallic effects.
For years, the cosmetics industry has made a great deal of money by promotion beauty products. People require these things & cosmetics companies provide them - simple supply & demand. The issue with nanoengineered products is that no knows whether they are safe.

Nanoparticles can feign very antithetical chemical, corporeal and begotten properties than their normal-sized counterparts. This, coupled with the fact that these tiny particles can be absorbed finished the cutis or indrawn, is causing operative concern about the country of nanoparticles, especially those victimized in informal toiletries.
Tho' there is no expressed inform that nanocosmetics pose a health hazard, origin studies inform there may be large seek of nanoparticles temporary through the rind, into the bloodstream, and accumulating in paper and meat. It is believed that hearty wound provides an decent roadblock against particle sorption; nonetheless scraped, and plane flexed, pare may countenance particles to follow the body.
A assemble of researchers led by the Neurotoxicology Discord at EPA's (Environmental Endorsement Bureau) National Welfare and Environmental Effects Research Laboratory in the U.S. jazz studied the force of titania (titanium pollutant nanoparticles) in walk cells. The researchers rumored ("Metal Whitener (P25) Produces Activated Oxygen Species in Immortalized Intelligence Microglia (BV2): Implications for Nanoparticle Neurotoxicity") that the nanoparticles, which are currently victimized in sunblock products, falsify the cells' mean greeting to adventive particles. Rather than releasing a have of chemicals - oxidizable gas species (ROS) - to protect the mentality, the nanoparticles stimulate a slower resign of ROS, which could be potentially prejudicious to other intelligence cells. Else studies someone shown correspondent results in search. There is no aggregation to affirm that this type of oxidative
{Although this is one of much than 350 hit studies ("Calls Wave for Much Explore on Toxicology of Nanomaterials") currently underway at labs and academic institutions around the orb, scientists emphasize that these results are origination and untold solon explore must be done before an answer is institute. In an article publicised in Power ("Virulent Potential of Materials at the Nanolevel"), researchers at UCLA finished that though it is likely that engineered nanomaterials may make nephrotoxic personalty, there is less grounds to declare the personalty instrument cause a key difficulty that cannot be addressed by a noetic, technological motion. Although assured in science's knowledge to assure the safety of nanomaterials, these scientists also urge an prompt and proactive attack to area - which so far, hasn't happened in a large-scale and interconnected way.
In the meantime, numerous toiletry containing nanoparticles are already on the industry, and author are state introduced. A past list work institute statesman than 270 nanotechnology products already on the industry in 15 countries; umpteen of those were toiletries. These 270+ products may inform a fairly true show of the industry - or they may personify only a puny reckon of what's truly out there.
Because the toiletry manufacture is largely unregulated and cosmetics manufacturers are not required to give quantity labeling, more grouping may be exposing themselves to the country uncertainties of nanoparticles without educated it. At this doctor, consumers can bag their purchasing decisions only on advertising claims. And, piece nanotechnology is a general nonsense in marketing, not all products containing nanoparticles advertise their proximity.
The lack of substance nigh the safety of nanoparticles has generated fear among directional supranational regulatory agencies. In the U.S., the Matter and Ingest Governance (FDA) is currently considering whether a effort and empowerment system control the use of nanoparticles in toiletries should be implemented.
Crusader Concerns Get Louder
Friends of the Stuff (FOE), an outside mesh of grassroots environmental groups, is one of the most voiced advocates for stricter controls on products containing nanoparticles. The system is calling for a moratorium on specified products and the termination of those already on the marketplace, until decent bingle studies know been completed and regulations put in gauge.
In a past information ("Nanomaterials, sunscreens and cosmetics: Runty Ingredients, Big Risks", pdf download 4 MB), FOE criticizes regime agencies, including the FDA and the Royal Order in the UK, for their lack of activity concerning the business and merchantability of products containing nanoparticles. "The insolvency of regime regulators to bonk earnestly the azoic warning signs surrounding nanotoxicity suggests that they have learned null from any of the longer identify of disasters that resulted from the nonstarter to act to azoic warning signs around old detected 'wonder' materials (suchlike asbestos, DDT and PCBs)." Remaining organizations, including the Environmental Construction with business for nano-cosmetics that expectation low wrinkles or whiter set, the enticement may examine overwhelming. Whether the promises - or the risks - are sincere needs to be shown. Notwithstanding, until the potency risks are thoroughly premeditated, should the bark for smoother rind and flashier eye dominate conduct activity over eudaimonia and safety concerns?
 

nanotechnology startling landscapes

The nanoworld cannot be portrayed with a camera, nor can it be seen even with the most powerful optical microscope. Only special instruments have access to images of the nanoworld. A fascinating new exhibition "Blow-up: images from the nanoworld" in Modena/Italy shows the work of scientists associated with the National Middle on Nanostructures & Biosystems at Surfaces in Modena, France, headed by Elisa Molinari. The images have been manipulated in a variety of ways by photographer, Lucia Covi. Covi is sensible to the aesthetic paradigms of scientists: her gaze thus grasps essential aspects of the portrayed objects & lets her shine them with a brand spanking new light, as they are revealed now. This exhibition brings to the public images that are usually available to few, because they stay confined in the research laboratories, on the scientists' desks. The images are stills that, over time, have been put together from different framings, & that they can look at thanks to the mediation of machines. A number of them represent exceptional events, outstanding results that ended on the cover of scientific journals. Others were born from everyday research. All of them show a landscape that is being unraveled by scientists, scenery that is different from the they can see in the media, largely obtained through computer graphics & "artistic" interpretations, when not directly borrowed from science fiction.

 
Scanning near-field optical microscopy (SNOM) makes use of nanoscale metal tips to scan a surface. Here, a standard tip has been modified & sharpened to increase its precision. The tip in the midst of this structure measures a few tens of nanometers. (Picture: G.C. Gazzadi, S3 (INFM-CNR), Modena; P.Gucciardi, CNR-IPCF, Messina. Artwork: Lucia Covi)

Developing new instruments to be able to "see" at the nanoscale is a research field in itself. Shown here is the tip of an atomic force microscope (AFM), of the foremost tools for imaging, measuring & manipulating matter at the nanoscale. Here, a platinum electrode measuring hundredth of a nanometer has been deposited on the tip of this pyramid formed AFM tip by focused ion beam (FIB) deposition. (Picture: C. Menozzi, G.C. Gazzadi, S3 (INFM-CNR), Modena. Artwork: Lucia Covi)

Top view of a hole carved in a polyethylene surface. During a series of experiments the use of a FIB has proven to be very versatile and capable of carving various materials, including plastic. (Image: G.C. Gazzadi, S3 (INFM-CNR), Modena. Artwork: Lucia Covi)

Scanning electron microscope (SEM) picture of quantum dots fabricated through electron beam lithography & later dry-chemical etching on a quasi bidimensional layer (GaAl heterostructure). These structures are used to study the behavior of electrons, which are confined in to small spaces – approximate. ten electrons per dot. The diameter of each quantum dot is 200 nm (which means that a billion of these structure basically fit on the tip of your finger). (Picture: C.P. Garcia, V. Pellegrini , NEST (INFM), Pisa. Artwork: Lucia Covi)

SEM picture of a micron sized trench (10x 20x14 µm3) in a Cu/SiO2/Si multilayer, obtained through FIB milling. The precision of this method allows the visualization of ultrathin (tens of nanometers) layers. (Picture: G.C.Gazzadi, S.Frabboni, S3 (INFM-CNR), Modena. Artwork: Lucia Covi)

SEM picture of a work sample on a magnesium oxide surface using FIB. The diameter of the hole measures approximate. three µm. (Picture: G.C. Gazzadi, A. Spessot, S3 (INFM-CNR), Modena. Artwork: Lucia Covi)


Tiny spaces have formed inside titanium dioxide nanocrystals, as shown in this SEM picture. The square structure of these inside spaces, which measure between twenty nm & 40 nm, is due to the crystalline structure of the material. (Picture: L. Nasi, IMEM (CNR), Parma. Artwork: Lucia Covi)