Matches in SemOpenAlex for { <https://semopenalex.org/work/W2765402743> ?p ?o ?g. }
- W2765402743 endingPage "96" @default.
- W2765402743 startingPage "83" @default.
- W2765402743 abstract "Abstract This review deals with critical issues in the development of energy-efficient windows from two fundamentally different approaches, namely, spectral selectivity and photothermal effect. This review is therefore divided into two parts. The first part reviews the engineering considerations based on an ideal window concept in terms of spectral selectivity, glazing scale, seasonal factors, and related thermal transfer. In particular, spectrally selective window designs and metal-based thin films are introduced with optimized engineering parameters and physical properties. The second part introduces a new approach of thermal insulation via the photothermal effect of the nanostructured thin films and coatings. The key that limits the heat flow through windows is the thermal insulation, which is traditionally constructed by multi-pane structures with an insulating layer. A novel concept not relying on any insulating media, but photothermal effects of nanomaterial coatings has been recently proposed and experimental verified. Both concepts of spectral selectivity and photothermal effects are introduced for energy-efficient window applications. A new direction is proposed in the development of the energy-efficient windows via the photothermal effects in various nanostructures of thin films and coatings." @default.
- W2765402743 created "2017-11-10" @default.
- W2765402743 creator A5069590640 @default.
- W2765402743 creator A5090757952 @default.
- W2765402743 date "2017-12-01" @default.
- W2765402743 modified "2023-10-17" @default.
- W2765402743 title "Spectral selective and photothermal nano structured thin films for energy efficient windows" @default.
- W2765402743 cites W148200280 @default.
- W2765402743 cites W1554100830 @default.
- W2765402743 cites W1654979424 @default.
- W2765402743 cites W1880580236 @default.
- W2765402743 cites W1972262883 @default.
- W2765402743 cites W1975358058 @default.
- W2765402743 cites W1977791081 @default.
- W2765402743 cites W1978946773 @default.
- W2765402743 cites W1981104731 @default.
- W2765402743 cites W1994864879 @default.
- W2765402743 cites W1995378088 @default.
- W2765402743 cites W1999666024 @default.
- W2765402743 cites W2000144812 @default.
- W2765402743 cites W2003701022 @default.
- W2765402743 cites W2004184085 @default.
- W2765402743 cites W2004979201 @default.
- W2765402743 cites W2005724175 @default.
- W2765402743 cites W2014100000 @default.
- W2765402743 cites W2019107618 @default.
- W2765402743 cites W2019465500 @default.
- W2765402743 cites W2020999286 @default.
- W2765402743 cites W2032760352 @default.
- W2765402743 cites W2033516948 @default.
- W2765402743 cites W2038207524 @default.
- W2765402743 cites W2039197279 @default.
- W2765402743 cites W2039804447 @default.
- W2765402743 cites W2042941777 @default.
- W2765402743 cites W2051936571 @default.
- W2765402743 cites W2053435270 @default.
- W2765402743 cites W2054557535 @default.
- W2765402743 cites W2055721190 @default.
- W2765402743 cites W2056585993 @default.
- W2765402743 cites W2059608380 @default.
- W2765402743 cites W2061555643 @default.
- W2765402743 cites W2062467682 @default.
- W2765402743 cites W2063470712 @default.
- W2765402743 cites W2070843454 @default.
- W2765402743 cites W2071813286 @default.
- W2765402743 cites W2073577134 @default.
- W2765402743 cites W2077496983 @default.
- W2765402743 cites W2079264523 @default.
- W2765402743 cites W2080376276 @default.
- W2765402743 cites W2081308470 @default.
- W2765402743 cites W2085114163 @default.
- W2765402743 cites W2087430570 @default.
- W2765402743 cites W2090952572 @default.
- W2765402743 cites W2091502818 @default.
- W2765402743 cites W2093919240 @default.
- W2765402743 cites W2099393900 @default.
- W2765402743 cites W2108764383 @default.
- W2765402743 cites W2121923209 @default.
- W2765402743 cites W2124224737 @default.
- W2765402743 cites W2124995838 @default.
- W2765402743 cites W2134304198 @default.
- W2765402743 cites W2140241531 @default.
- W2765402743 cites W2157540458 @default.
- W2765402743 cites W2173170250 @default.
- W2765402743 cites W2187706338 @default.
- W2765402743 cites W2192327694 @default.
- W2765402743 cites W2287937912 @default.
- W2765402743 cites W2291622180 @default.
- W2765402743 cites W2292628419 @default.
- W2765402743 cites W2342771398 @default.
- W2765402743 cites W2343116473 @default.
- W2765402743 cites W2531027364 @default.
- W2765402743 cites W2559987372 @default.
- W2765402743 cites W2578455969 @default.
- W2765402743 cites W2610885158 @default.
- W2765402743 cites W2640991712 @default.
- W2765402743 cites W770493726 @default.
- W2765402743 doi "https://doi.org/10.1016/j.apenergy.2017.10.066" @default.
- W2765402743 hasPublicationYear "2017" @default.
- W2765402743 type Work @default.
- W2765402743 sameAs 2765402743 @default.
- W2765402743 citedByCount "60" @default.
- W2765402743 countsByYear W27654027432018 @default.
- W2765402743 countsByYear W27654027432019 @default.
- W2765402743 countsByYear W27654027432020 @default.
- W2765402743 countsByYear W27654027432021 @default.
- W2765402743 countsByYear W27654027432022 @default.
- W2765402743 countsByYear W27654027432023 @default.
- W2765402743 crossrefType "journal-article" @default.
- W2765402743 hasAuthorship W2765402743A5069590640 @default.
- W2765402743 hasAuthorship W2765402743A5090757952 @default.
- W2765402743 hasBestOaLocation W27654027431 @default.
- W2765402743 hasConcept C159985019 @default.
- W2765402743 hasConcept C171250308 @default.
- W2765402743 hasConcept C182606246 @default.
- W2765402743 hasConcept C19067145 @default.
- W2765402743 hasConcept C192562407 @default.
- W2765402743 hasConcept C2780357685 @default.