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HomeAuthorsLiu H.

Authors: Liu H.

Nano Graphene Oxide as Drug Carrier for Antihypertensive Agent: Benazepril, Captopril and Losartan

Wang J., Long Y., Tao C., Liu H., Zhu H., Zhou X., National University of Defense Technology, CN
Graphene oxide (GO) offers large surface and novel biocompatible properties that are currently being explored for advanced drug carriers. GO has a one-atom-thick two dimensional carbon system, which contains several kinds of oxygen functional groups [...]

Graphene/PDMS composites for optical heating on microfluidic chips

Tao C., Lv Y., Liu H., Hu Z., Zhu H., Wang J., National University of Defense Technology, CN
Microfluidic chips have attracted extensive attention from both industrial and academic communities due to its virtues of miniaturization, integration, automation. Nowadays, simple and economical means of photothermal conversion on microfluidic chips are strongly desired.In this [...]

Highly robust array of nanosensing platform for biosensing application

Stateikina I., Ng A., Chinnappan R., Ahmed M., Zourob M., INRS, CA
This work presents a simple method of combining macro connectors with pre-fabricated nanovire chips. This design offers a unique ease and rapidity of connecting the nanowires with the connectors without using imaging and external aid [...]

Modeling Aggregation and Size Distribution of Nanoparticles with Monte Carlo Simulation

Liu H., Surawanvijit S., Rallo R., Orkoulas G., Cohen Y., University of California, Los Angeles, US
The size distribution of the nanoparticles and their aggregates is crucial for predictions of the fate and transport of nanoparticles in the environment. A computational model was developed in the present work based on a [...]

A Hydrophobicity Controlled Nanofluidic Pump

Liu H., Dharmatilleke S., Tay A.A.O., Institute of Materials Research and Engineering, SG
interfacial energies in the system. Many methods for modulation of surface tension to manipulate fluids in micro or nano scale have been studied and reported, including the mechanical (surface roughness effect), chemical (electrochemical effect), opto- [...]

Novel Resorbable Drug-Carrying Nano-Scaffolds for Treating Bone Diseases at Targeted Sites

Liu H., Webster T.J., Brown University, US
Pharmaceutical agents are often required to stimulate new bone formation for the treatment of bone injuries or diseases (such as osteoporosis and osteosarcoma). However, there are several problems associated with current drug delivery methods. First, [...]

Favored Osteoblast Interactions with Aerosol Printed 3D Nano-to-Macro Hierarchical Architectures: The Promise of Nanocomposites as Orthopedic Prostheses

Liu H., Webster T.J., Brown University, US
Ceramic/polymer nanocomposites simulate bone in terms of its nanostructure and associated properties, thus, offering a promising new opportunity for bone regeneration in a natural way. Previous in vitro studies demonstrated that well-dispersed nanophase titania in [...]

Less Harmful Acidic Degradation of Poly(lactide-co-glycolide) Bone Tissue Engineering Scaffolds through Titania Nanoparticle Addition

Liu H., Slamovich E.B., Webster T.J., Purdue University, US
In the last ten years, biodegradable aliphatic polyesters, such as poly(lactide-co-glycolide) acid (PLGA), have attracted increasing attention for their use as scaffold materials in bone tissue engineering because their degradation products can be removed by [...]

Nano-Diamond compressibility at pressures up to 85 GPa

Pantea C., Zhang J., Qian J., Zhao Y., Migliori A., Grzanka E., Palosz B., Wang Y., Zerda T.W., Liu H., Ding Y., Stephens P.W., Botez C.E., Los Alamos National Laboratory, US
According to the core-shell model nanocrystals consist of a uniform core surrounded by a surface shell. Crystallographic structure of the surface shell is the same as that of the core but interatomic distances in the [...]

Polymeric Nanowire Architectures and Nanodevices

Liu H., Kameoka J., Verbridge S., Craighead H.G., Cornell University, US
We devised a method, named as scanned electrospinning technique, to form a variety of one-dimensional polymeric nanostructures. It is a straightforward technique that enables the rapid fabrication of oriented polymeric nanowires as well as their [...]

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