2023
DOI: 10.1007/s00339-023-06592-3
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Atomic layer deposition of hafnium oxide on porous silicon to form a template for athermal SERS-active substrates

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Cited by 3 publications
(6 citation statements)
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“…Additionally, TMNs can exhibit plasmonic behavior in the visible and near-infrared range under certain conditions, such as variations in optical properties, chemical deposition, and structural size. 23,96–98…”
Section: Inorganic Semiconductor Sers-active Substratesmentioning
confidence: 99%
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“…Additionally, TMNs can exhibit plasmonic behavior in the visible and near-infrared range under certain conditions, such as variations in optical properties, chemical deposition, and structural size. 23,96–98…”
Section: Inorganic Semiconductor Sers-active Substratesmentioning
confidence: 99%
“…97 Most importantly, HfN can provide a thermal effect; thus, a stable SERS signal of the analyte can be obtained. 98…”
Section: Inorganic Semiconductor Sers-active Substratesmentioning
confidence: 99%
“…Prior to this, each block was treated with a piranha solution, consisting of H 2 SO 4 :H 2 O 2 at a 3:1 volume ratio, and maintained at a temperature between 70-80 • C for 5 min to slightly roughen its surface for further improvement of metal coating adhesive strength. Ag nanoparticles were grown by the "silver mirror" method in a mixture of basic solution (4 mL), reducing solution (1 mL), and ethanol (1 mL) [11,25]. Basic and reducing solutions were water solutions of 0.07 M AgNO 3 , 0.2 M NaOH, 0.6 M NH 3 , and 0.4 M C 4 H 4 KNaO 6 •4H 2 O, respectively.…”
Section: Fabrication Of Sers-active Substratesmentioning
confidence: 99%
“…Wide band gap (WBG) semiconductors are other rather "fresh" materials that can potentially lead to engineering the SERS-active substrates possessing athermal and selfcleaning properties [11][12][13][14]. The first feature allows SERS measurements to be free of the thermal-induced destruction of analyte molecules, thus improving analysis reliability [11]. At the same time, the UV-facilitated cleaning of the SERS-active substrates which have passed through the analysis cycle is of high demand in affordability terms [14].…”
Section: Introductionmentioning
confidence: 99%
“…Such regimens make it possible to form a nickel film of 800 nm thickness. The SERS-active coating was then fabricated on the nickel-coated macroPSi using the "silver mirror" method, which has been described elsewhere [29]. A solution was prepared by mixing 0.07 M AgNO 3 , 0.2 M NaOH, 0.6 M NH 3 , C 4 H 4 KNaO 6 •4H 2 O, and ethanol in a volume ratio of 4:1:1.…”
Section: Fabrication Of Sers-active Substratesmentioning
confidence: 99%