BIO FUEL
USTC develops a family of bioinspired artificial woods by traditional resins
by Staff Writers
Beijing, China (SPX) Aug 13, 2018

Artificial woods are formed in molecular scale and details.

Nature has provided us not only the fantastic materials, but also the inspiration for the design and fabrication of high-performance biomimetic engineering materials. Woods, which have been used for thousands of years, have received considerable attention due to the low density and high strength.

The unique anisotropic cellular structure endow the woods with outstanding mechanical performances. In recent decades, various materials have been produced into monolithic materials with anisotropically cellular structures, trying to duplicate the lightweight and high-strength woods. However, the reported artificial wood-like materials suffer from unsatisfactory mechanical properties. Up to now, it is still a significant challenge to fabricate the artificial wood-like materials with the lightweight and high-strength properties.

Recently, a research team led by Prof. YU Shuhong from the University of Science and Technology of China (USTC) demonstrate a novel strategy for large-scale fabrication of a family of bioinspired polymeric woods with similar polyphenol matrix materials, wood-like cellular microstructures, and outstanding comprehensive performance by a self-assembly and thermocuring process of traditional resins (phenolic resin and melamine resin). This work was published on Science Advances entitled as "Bioinspired polymeric woods" on August 10th (Science Advances 2018, 4, eaat7223).

The liquid thermoset resins were firstly unidirectionally frozen to prepare a "green body" with the cellular structure, followed by the subsequent thermocuring to get the artificial polymeric woods. The artificial woods bear a close resemblance to natural woods in the mesoscale cellular structures, and exhibit well controllability in the pore size and wall thickness. Benefiting from the starting aqueous solution, it also represents a green approach to prepare multifunctional artificial woods by compositing various nanomaterials, such as cellulose nanofibers and graphene oxide.

The polymeric and composite woods manifest lightweight and high-strength properties with the mechanical strength comparable to that of natural wood. In contrast with natural woods, the artificial woods exhibit better corrosion resistance to water and acid with no decrease in mechanical properties, as well as much better thermal insulation and fire retardancy.

The artificial polymeric woods even stand out from other engineering materials such as cellular ceramic materials and aerogels in terms of specific strength and thermal insulation properties. As a kind of biomimetic engineering materials, this new family of bioinspired polymeric woods is supposed to replace the natural wood when used in harsh environments.

This novel strategy provides a new and powerful route to fabricate and engineer a wide range of high-performance biomimetic engineering composite materials with desirable multifunctionality and advantages over the traditional counterparts, which will have broad applications in many technical fields.


Related Links
University of Science and Technology of China
Bio Fuel Technology and Application News

BIO FUEL
Taming defects in nanoporous materials to put them to a good use
Swansea UK (SPX) Aug 09, 2018
The word "defect" universally evokes some negative, undesirable feature, but researchers at the Energy Safety Research Institute (ESRI) at Swansea University have a different opinion: in the realm of nanoporous materials, defects can be put to a good use, if one knows how to tame them. A team led by Dr Marco Taddei, Marie Sklodowska-Curie Actions Fellow at Swansea University, is investigating how the properties of metal-organic frameworks, a class of materials resembling microscopic sponges, can b ... read more

Comment using your Disqus, Facebook, Google or Twitter login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle

BIO FUEL
Romania minister under fire over 'ballistic' gaffe

Japan to spend $4.2 bn over 30 years on missile defence system radar

US Congress pushes Ballistic Missile Defense Program based on laser-armed drones

Intercept Sets Distance Record for Lockheed Martin's Hit-to-Kill PAC-3 MSE

BIO FUEL
UN panel finds further evidence of Iran link to Yemen missiles

Saudi-led coalition says destroyed Yemen rebel missile launch sites

Russian Scientist Jailed as Moscow Probes Hypersonic Missile Secrets Leak

Raytheon, Lockheed receive contract for Javelin missile production

BIO FUEL
An insect-inspired drone deforms upon impact

AeroVironment awarded contract for drone data links for Norway

Insitu receives contract for ScanEagle UAVs for Afghanistan

Insitu awarded contract for RQ-21 unmanned aerial vehicles

BIO FUEL
Navy Satellite System Receives Green Light for Expanded Operational Use

Powerful Communications Satellite for US and Allies Shipped for Launch

Russia Grants Kazakhstan Access to Military Satellite Signal

Why Ku-band HTS is superior for AISR

BIO FUEL
White House backs court ban of 3D-printed guns

Raytheon contracted for AN/DAS-4 targeting systems

Atlantic Diving Supply awarded $49 million for M17, M18 holsters

3M to pay $9.1M in damages for defective combat earplugs

BIO FUEL
US Senate passes huge defense bill, sends it to Trump

Profits down at military equipment firm BAE Systems

US releases $195 million in frozen military aid to Egypt

EU anti-trust officials probe Thales, Gemalto merger

BIO FUEL
Post-Brexit Britain's military will remain 'tier one,' minister says

Kremlin warns of conflict if Georgia joins NATO

US denies role as Venezuela's Maduro blames 'assassination' attempt on Colombia

The lightning Russia-Georgia war

BIO FUEL
Individual silver nanoparticles observed in real time

Researchers use nanotechnology to improve the accuracy of measuring devices

A new 'periodic table' for nanomaterials

Physicists uncover why nanomaterial loses superconductivity