N-eicosane/expanded graphite as composite phase change materials for electro-driven thermal energy storage DOI
Chuanchang Li, Bo Zhang, Qingxia Liu

и другие.

Journal of Energy Storage, Год журнала: 2020, Номер 29, С. 101339 - 101339

Опубликована: Март 13, 2020

Язык: Английский

Microfluidic Production of Multiple Emulsions DOI Creative Commons
Goran T. Vladisavljević,

Ruqaya Al Nuumani,

Seyed Ali Nabavi

и другие.

Micromachines, Год журнала: 2017, Номер 8(3), С. 75 - 75

Опубликована: Март 2, 2017

Microfluidic devices are promising tools for the production of monodispersed tuneable complex emulsions. This review highlights advantages microfluidics fabrication emulsions and presents an overview microfluidic emulsification methods including two-step single-step high-order multiple (double, triple, quadruple quintuple) with and/or multi-distinct inner cores. The formation emulsion drops ultra-thin middle phase, multi-compartment jets, Janus ternary composed two or three distinct surface regions also presented. Different configurations drop makers covered, such as co-flow, T-junctions flow focusing (both planar three-dimensional (3D)). Furthermore, modifications channels different modes droplet generation summarized. Non-confined geometries used buoyancy-driven membrane integrated discussed. includes parallelization splitting strategies scaling up emulsification. productivity a single maker is typically <1 mL/h; thus, more than 1000 needed to achieve commercially relevant throughputs >1 L/h, which requires combining into twodimensional (2D) 3D assemblies fed from set inlet ports through network distribution collection channels.

Язык: Английский

Процитировано

148

Facile flexible reversible thermochromic membranes based on micro/nanoencapsulated phase change materials for wearable temperature sensor DOI

Yayue He,

Wei Li,

Na Han

и другие.

Applied Energy, Год журнала: 2019, Номер 247, С. 615 - 629

Опубликована: Апрель 20, 2019

Язык: Английский

Процитировано

136

Design and fabrication of bifunctional microcapsules for solar thermal energy storage and solar photocatalysis by encapsulating paraffin phase change material into cuprous oxide DOI

Fengxia Gao,

Xiaodong Wang, Dezhen Wu

и другие.

Solar Energy Materials and Solar Cells, Год журнала: 2017, Номер 168, С. 146 - 164

Опубликована: Апрель 26, 2017

Язык: Английский

Процитировано

134

Ultralight and Flexible Carbon Foam-Based Phase Change Composites with High Latent-Heat Capacity and Photothermal Conversion Capability DOI
Weiwei Wang, Yibing Cai, Mingyue Du

и другие.

ACS Applied Materials & Interfaces, Год журнала: 2019, Номер 11(35), С. 31997 - 32007

Опубликована: Авг. 8, 2019

It is important to explore and develop multifunctional phase change composites with high latent-heat capacity photothermal conversion capability. A novel ultralight flexible carbon foam (CF)-based composite was fabricated by encapsulating n-eicosane into a CF skeleton that had been precoated titanium(III) oxide (Ti2O3) nanoparticles (NPs). Morphological structures, as well the properties of leakage-proof, thermal energy storage, temperature regulation, conversion, were investigated. The results indicated derived from melamine (MF) through stabilization in air followed carbonization nitrogen highly porous, which ensured excellent mechanical support large mass ratio for composites. loading percentage 84% acted storage unit guaranteed good regulation property composite; melting/crystallization temperatures enthalpies corresponding 36.4/33.7 °C 200.1/200.6 kJ·kg–1, respectively. modified Ti2O3 NPs endowed enhanced leakage-proof property, capability, superior reliability, ability. Therefore, resultant are believed have promising potential applications solar thermal-energy waste-heat recovery, infrared stealth military targets, so forth.

Язык: Английский

Процитировано

134

N-eicosane/expanded graphite as composite phase change materials for electro-driven thermal energy storage DOI
Chuanchang Li, Bo Zhang, Qingxia Liu

и другие.

Journal of Energy Storage, Год журнала: 2020, Номер 29, С. 101339 - 101339

Опубликована: Март 13, 2020

Язык: Английский

Процитировано

130