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Hoque, Muhammad Jahidul; Yan, Xiao; Qiu, Haoyun; Qin, Yimeng; Du, Xuzhi; Stermer, Jackson; Miljkovic, Nenad (, ACS Applied Materials & Interfaces)
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Hoque, Muhammad Jahidul; Li, Longnan; Ma, Jingcheng; Cha, Hyeongyun; Sett, Soumyadip; Yan, Xiao; Rabbi, Kazi Fazle; Ho, Jin Yao; Khodakarami, Siavash; Suwala, Jason; et al (, Nature Communications)Abstract Seventy percent of global electricity is generated by steam-cycle power plants. A hydrophobic condenser surface within these plants could boost overall cycle efficiency by 2%. In 2022, this enhancement equates to an additional electrical power generation of 1000 TWh annually, or 83% of the global solar electricity production. Furthermore, this efficiency increase reduces CO2emissions by 460 million tons /year with a decreased use of 2 trillion gallons of cooling water per year. However, the main challenge with hydrophobic surfaces is their poor durability. Here, we show that solid microscale-thick fluorinated diamond-like carbon (F-DLC) possesses mechanical and thermal properties that ensure durability in moist, abrasive, and thermally harsh conditions. The F-DLC coating achieves this without relying on atmospheric interactions, infused lubricants, self-healing strategies, or sacrificial surface designs. Through tailored substrate adhesion and multilayer deposition, we develop a pinhole-free F-DLC coating with low surface energy and comparable Young’s modulus to metals. In a three-year steam condensation experiment, the F-DLC coating maintains hydrophobicity, resulting in sustained and improved dropwise condensation on multiple metallic substrates. Our findings provide a promising solution to hydrophobic material fragility and can enhance the sustainability of renewable and non-renewable energy sources.more » « less
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Ma, Jingcheng; Kim, Jin Myung; Hoque, Muhammad Jahidul; Thompson, Kamila J.; Nam, SungWoo; Cahill, David G.; Miljkovic, Nenad (, Nano Letters)
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Hoque, Muhammad Jahidul; Sett, Soumyadip; Yan, Xiao; Liu, Derrick; Rabbi, Kazi Fazle; Qiu, Haoyun; Qureshi, Mansoor; Barac, George; Bolton, Leslie; Miljkovic, Nenad (, ACS Applied Materials & Interfaces)