bio-based artificial nacre with excellent mechanical

Sesen Bio Announces Commercial Launch Readiness

2021/5/4Sesen Bio (Nasdaq: SESN), a late-stage clinical company developing targeted fusion protein therapeutics for the treatment of patients with cancer, today announced the expansion of its leadership team with the appointment of experienced commercial industry leader, Lisa LaMond, as Vice President, Sales and Corporate Systems. The Company also announced its engagement of leading contract

Hierarchical Nacre Mimetics with Synergistic Mechanical

Zongxu Liu, Wenyan Wang, Jiaojun Tan, Jin Liu, Meifang Zhu, Baolei Zhu, Qiuyu Zhang, Bioinspired ultra-thin polyurethane/MXene nacre-like nanocomposite films with synergistic mechanical properties for electromagnetic interference shielding, Journal of10.1039

Strain

2021/4/28In past few decades, there have been substantial advances in theoretical material design and experimental synthesis, which play a key role in the steep ascent of developing functional materials with unprecedented properties useful for next-generation technologies. However, the ultimate goal of synthesis science, i.e., how to locate atoms in a specific position of matter, has not been achieved

Mass production of bulk artificial nacre with excellent

2017/8/18Mass production of bulk artificial nacre with excellent mechanical properties. Gao HL 1, Chen SM 1, Mao LB 1, Song ZQ 2, Yao HB 1, Clfen H 3, Luo XS 4, Zhang F 4, Pan Z 1, Meng YF 1, Ni Y 2, Yu SH 1 Author information Affiliations 7 authors 1. Division of

Electronic Supplementary Information Nanosheets with Excellent Mechanical and Thermally Conductive Properties Artificial Nacre

Artificial Nacre-like Paper Based on Noncovalent Functionalized Boron Nitride Nanosheets with Excellent Mechanical and Thermally Conductive Properties Xiaoliang Zeng, ‡a Lei Ye,‡b Shuhui Yu,a Hao Li,b Rong Sun*a, and Jianbin Xu*b and Ching-Ping Wongb a

School of Physics, University of Hyderabad, India

Artificial Nacre Nanocomposites for Advanced Applications. NanomedNanotechnol J. 2018; 2(1):117. Conclusion An efficient approach to attain high mechanical and structured materials in artificial materials is achieved by mimicking nacre's hierarchical brick-and

Nacre

'Bricks-and-mortar' structure of seashell nacre was conceptually replicated into the prepared film, which endows the obtained film with excellent mechanical property and great abrasion resistance. In addtion, the prepared film also exhibits stable underwater superoleophobicity, low oil adhesion, and outstanding environment durability in artificial seawater.

Artificial neural network

Artificial neural networks (ANNs), usually simply called neural networks (NNs), are computing systems vaguely inspired by the biological neural networks that constitute animal brains. An ANN is based on a collection of connected units or nodes called artificial neurons, which loosely model the neurons in a biological brain.

Artificial Intelligence could create better outcomes for bow

2021/4/26A test which uses artificial intelligence (AI) to measure proteins present in some patients with advanced bowel cancer could hold the key to more targeted treatment, according to new research. A team at the University of Leeds collaborated with researchers at Roche Diagnostics to develop the technique, which will help doctors and patients to decide on the best treatment options.

Molecular Mechanistic Origin of the Mechanical

In this disse rtation, red abalone nacre was chosen to be investigated, based on how the hierarchical structure and other st ructural features, which have been detected through experimental techniques, control the outstanding mechanical performance of nacre.

Mass production of bulk artificial nacre with excellent

Various methods have been exploited to replicate nacre features into artificial structural materials with impressive structural and mechanical similarity. However, it is still very challenging to produce nacre-mimetics in three-dimensional bulk form, especially for further scale-up. Herein, we demonstrate that large-sized, three-dimensional bulk artificial nacre with comprehensive mimicry of

Black Phosphorus in Biological Applications: Evolutionary

2021/5/4ConspectusUnderstanding the evolutionary journey of monoelemental black phosphorus (BP) to BP-based composites plays a crucial role in expanding and advancing the development of BP in biological applications. Because of its exceptional unique structure and superior biological properties, BP has been extensively developed into various nanomaterials for different biological applications.

Strain

2021/4/28In past few decades, there have been substantial advances in theoretical material design and experimental synthesis, which play a key role in the steep ascent of developing functional materials with unprecedented properties useful for next-generation technologies. However, the ultimate goal of synthesis science, i.e., how to locate atoms in a specific position of matter, has not been achieved

High

2021/4/18Moreover, bio-based carbon electrodes have excellent physical properties that permit them to perform outstandingly in energy storage applications. In this review, emerging and recent bio-based carbon precursors as high-performance electrodes in energy storage applications are classified and categorized based on their nanostructured morphologies (0D, 1D, 2D, and 3D) and natural origin.

Incorporation of dual nanoplatelets to a natural polymer

Bio-based artificial nacre with excellent mechanical and barrier properties realized by a facile in situ reduction and cross-linking reaction ACS Nano, 11 ( 1 ) ( 2017 ), pp. 325 - 334 CrossRef View Record in Scopus Google Scholar

Black Phosphorus in Biological Applications: Evolutionary

2021/5/4ConspectusUnderstanding the evolutionary journey of monoelemental black phosphorus (BP) to BP-based composites plays a crucial role in expanding and advancing the development of BP in biological applications. Because of its exceptional unique structure and superior biological properties, BP has been extensively developed into various nanomaterials for different biological applications.

Strain

2021/4/28In past few decades, there have been substantial advances in theoretical material design and experimental synthesis, which play a key role in the steep ascent of developing functional materials with unprecedented properties useful for next-generation technologies. However, the ultimate goal of synthesis science, i.e., how to locate atoms in a specific position of matter, has not been achieved

Biomimetics

Biomimetics or biomimicry is the emulation of the models, systems, and elements of nature for the purpose of solving complex human problems. [1] The terms biomimetics and biomimicry are derived from Ancient Greek: βίος (bios), life, and μίμησις (mīmēsis), imitation, from μιμεῖσθαι (mīmeisthai), to imitate, from μῖμος (mimos), actor.

Genetically engineered protein based nacre

A study on bio-mineralization within a chitosan matrix infiltrated with silk fibroin through an ice-templating and hot-pressing method for artificial nacre fabrication was recently reported by Mao et al. 16 In another study by Cui et al., 17 graphene-based nacre with

Bio‐Inspired Nacre‐like Composite Films Based on

Bio‐Inspired Nacre‐like Composite Films Based on Graphene with Superior Mechanical, Electrical, and Biocompatible Properties Yuan‐Qing Li School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore 639798, Singapore

Molecular Mechanistic Origin of the Mechanical

In this disse rtation, red abalone nacre was chosen to be investigated, based on how the hierarchical structure and other st ructural features, which have been detected through experimental techniques, control the outstanding mechanical performance of nacre.

Artificial bone

Artificial nacre that mimicked both the structure and the effect of the ionic bonds had a tensile strength similar to natural nacre as well as an ultimate Young's modulus similar to lamellar bone. From a mechanical standpoint, this material would be a viable option for artificial bone.

Nacre

'Bricks-and-mortar' structure of seashell nacre was conceptually replicated into the prepared film, which endows the obtained film with excellent mechanical property and great abrasion resistance. In addtion, the prepared film also exhibits stable underwater superoleophobicity, low oil adhesion, and outstanding environment durability in artificial seawater.

Incorporation of dual nanoplatelets to a natural polymer

Bio-based artificial nacre with excellent mechanical and barrier properties realized by a facile in situ reduction and cross-linking reaction ACS Nano, 11 ( 1 ) ( 2017 ), pp. 325 - 334 CrossRef View Record in Scopus Google Scholar

Biomimetics

Biomimetics or biomimicry is the emulation of the models, systems, and elements of nature for the purpose of solving complex human problems. [1] The terms biomimetics and biomimicry are derived from Ancient Greek: βίος (bios), life, and μίμησις (mīmēsis), imitation, from μιμεῖσθαι (mīmeisthai), to imitate, from μῖμος (mimos), actor.

Integrated ternary artificial nacre via synergistic

2016/6/29Natural nacre, consisting of one-dimensional (1D) nanofibrillar chitin and two-dimensional (2D) calcium carbonate platelets simultaneously [], possesses favorable mechanical properties with integrated strength and toughness, which are attributed to the synergy of rational interface and admirable hierarchical micro/nanoscale layered structure [1, 2].

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