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1.
Small ; 13(24)2017 06.
Artigo em Inglês | MEDLINE | ID: mdl-28489315

RESUMO

Formation of 3D mesostructures in advanced functional materials is of growing interest due to the widespread envisioned applications of devices that exploit 3D architectures. Mechanically guided assembly based on compressive buckling of 2D precursors represents a promising method, with applicability to a diverse set of geometries and materials, including inorganic semiconductors, metals, polymers, and their heterogeneous combinations. This paper introduces ideas that extend the levels of control and the range of 3D layouts that are achievable in this manner. Here, thin, patterned layers with well-defined residual stresses influence the process of 2D to 3D geometric transformation. Systematic studies through combined analytical modeling, numerical simulations, and experimental observations demonstrate the effectiveness of the proposed strategy through ≈20 example cases with a broad range of complex 3D topologies. The results elucidate the ability of these stressed layers to alter the energy landscape associated with the transformation process and, specifically, the energy barriers that separate different stable modes in the final 3D configurations. A demonstration in a mechanically tunable microbalance illustrates the utility of these ideas in a simple structure designed for mass measurement.


Assuntos
Nanoestruturas/química , Polímeros/química , Impressão Tridimensional
2.
Nat Commun ; 5: 4938, 2014 Sep 19.
Artigo em Inglês | MEDLINE | ID: mdl-25234839

RESUMO

Characterization of temperature and thermal transport properties of the skin can yield important information of relevance to both clinical medicine and basic research in skin physiology. Here we introduce an ultrathin, compliant skin-like, or 'epidermal', photonic device that combines colorimetric temperature indicators with wireless stretchable electronics for thermal measurements when softly laminated on the skin surface. The sensors exploit thermochromic liquid crystals patterned into large-scale, pixelated arrays on thin elastomeric substrates; the electronics provide means for controlled, local heating by radio frequency signals. Algorithms for extracting patterns of colour recorded from these devices with a digital camera and computational tools for relating the results to underlying thermal processes near the skin surface lend quantitative value to the resulting data. Application examples include non-invasive spatial mapping of skin temperature with milli-Kelvin precision (±50 mK) and sub-millimetre spatial resolution. Demonstrations in reactive hyperaemia assessments of blood flow and hydration analysis establish relevance to cardiovascular health and skin care, respectively.


Assuntos
Epiderme/fisiologia , Temperatura Cutânea , Pele/patologia , Algoritmos , Calibragem , Diagnóstico por Imagem , Difusão , Elastômeros , Humanos , Nanotecnologia , Fótons , Reprodutibilidade dos Testes
3.
Science ; 344(6179): 70-4, 2014 Apr 04.
Artigo em Inglês | MEDLINE | ID: mdl-24700852

RESUMO

When mounted on the skin, modern sensors, circuits, radios, and power supply systems have the potential to provide clinical-quality health monitoring capabilities for continuous use, beyond the confines of traditional hospital or laboratory facilities. The most well-developed component technologies are, however, broadly available only in hard, planar formats. As a result, existing options in system design are unable to effectively accommodate integration with the soft, textured, curvilinear, and time-dynamic surfaces of the skin. Here, we describe experimental and theoretical approaches for using ideas in soft microfluidics, structured adhesive surfaces, and controlled mechanical buckling to achieve ultralow modulus, highly stretchable systems that incorporate assemblies of high-modulus, rigid, state-of-the-art functional elements. The outcome is a thin, conformable device technology that can softly laminate onto the surface of the skin to enable advanced, multifunctional operation for physiological monitoring in a wireless mode.


Assuntos
Microfluídica/instrumentação , Monitorização Ambulatorial/instrumentação , Monitorização Fisiológica/instrumentação , Pele , Adulto , Elasticidade , Eletrocardiografia/instrumentação , Eletrocardiografia/métodos , Eletrocardiografia Ambulatorial/instrumentação , Eletrocardiografia Ambulatorial/métodos , Eletroencefalografia/instrumentação , Eletroencefalografia/métodos , Eletromiografia/instrumentação , Eletromiografia/métodos , Eletroculografia , Desenho de Equipamento , Humanos , Masculino , Monitorização Ambulatorial/métodos , Monitorização Fisiológica/métodos , Tecnologia de Sensoriamento Remoto , Elastômeros de Silicone , Tecnologia sem Fio , Adulto Jovem
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