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inkjet printing  (SCIENION)


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    Structured Review

    SCIENION inkjet printing
    Figure <t>2.</t> <t>Printing</t> of SSD in various substrate and related characterizations of SSD ink. <t>Inkjet-printed</t> micropixels in the form of matrix for a) 200 µm and b) 60 µm inter-droplet distance (both on an untreated Si/SiO2 surface). Uniform continuous printed geometrical pattern (typical square and rectangular pattern ≈3 × 3 mm2 and ≈3 × 4 mm2) on various rigid and flexible substrates, such as c) Kapton, d) silicone PDMS rubber, e) glass, f) PET, g) filter paper, and h) conventional office printer paper. Magnified image for continuous printed pattern with no “coffee ring effect” on the edge for i) silicon and j) Kapton. k) The SEM microstructure of rGO nano-flex and l) the typical photograph of CSEAHQS with SSD pixels printed on paper. m) Raman, n) FTIR, and o) NMR characteristics of SSD inks. p,q) FET and IV characteristics of rGO. Evaluation of cytotoxicity using human epithelial lung cells (r, untreated) for various SSD inks (thiol, amines, and chiral), such as mercapto hexanol (s (i, ii)), mercapto benzoic acid (t (i, ii)), dietha- nolamine (u (i, ii)), diethylamine (v (i, ii)), 2-amino-4-chlorobenzoic acid (w (i, ii)) at (i) 10 µg mL−1 and (ii) 100 µg mL−1 dosages, respectively (24 h). x) The live cell percentages for various functionalized-rGO ink concentrations and types of dosage after 24 h treatment.
    Inkjet Printing, supplied by SCIENION, used in various techniques. Bioz Stars score: 96/100, based on 317 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/dispensing+system+with+piezoelectric+nozzle+sciflexarrayer+s3/sciFLEXARRAYER+S3/pm36807927-219-44-51
    Average 96 stars, based on 317 article reviews
    inkjet printing - by Bioz Stars, 2026-09
    96/100 stars

    Images

    1) Product Images from "Spin-Controlled Helical Quantum Sieve Chiral Spectrometer."

    Article Title: Spin-Controlled Helical Quantum Sieve Chiral Spectrometer.

    Journal: Advanced materials (Deerfield Beach, Fla.)

    doi: 10.1002/adma.202209125

    Figure 2. Printing of SSD in various substrate and related characterizations of SSD ink. Inkjet-printed micropixels in the form of matrix for a) 200 µm and b) 60 µm inter-droplet distance (both on an untreated Si/SiO2 surface). Uniform continuous printed geometrical pattern (typical square and rectangular pattern ≈3 × 3 mm2 and ≈3 × 4 mm2) on various rigid and flexible substrates, such as c) Kapton, d) silicone PDMS rubber, e) glass, f) PET, g) filter paper, and h) conventional office printer paper. Magnified image for continuous printed pattern with no “coffee ring effect” on the edge for i) silicon and j) Kapton. k) The SEM microstructure of rGO nano-flex and l) the typical photograph of CSEAHQS with SSD pixels printed on paper. m) Raman, n) FTIR, and o) NMR characteristics of SSD inks. p,q) FET and IV characteristics of rGO. Evaluation of cytotoxicity using human epithelial lung cells (r, untreated) for various SSD inks (thiol, amines, and chiral), such as mercapto hexanol (s (i, ii)), mercapto benzoic acid (t (i, ii)), dietha- nolamine (u (i, ii)), diethylamine (v (i, ii)), 2-amino-4-chlorobenzoic acid (w (i, ii)) at (i) 10 µg mL−1 and (ii) 100 µg mL−1 dosages, respectively (24 h). x) The live cell percentages for various functionalized-rGO ink concentrations and types of dosage after 24 h treatment.
    Figure Legend Snippet: Figure 2. Printing of SSD in various substrate and related characterizations of SSD ink. Inkjet-printed micropixels in the form of matrix for a) 200 µm and b) 60 µm inter-droplet distance (both on an untreated Si/SiO2 surface). Uniform continuous printed geometrical pattern (typical square and rectangular pattern ≈3 × 3 mm2 and ≈3 × 4 mm2) on various rigid and flexible substrates, such as c) Kapton, d) silicone PDMS rubber, e) glass, f) PET, g) filter paper, and h) conventional office printer paper. Magnified image for continuous printed pattern with no “coffee ring effect” on the edge for i) silicon and j) Kapton. k) The SEM microstructure of rGO nano-flex and l) the typical photograph of CSEAHQS with SSD pixels printed on paper. m) Raman, n) FTIR, and o) NMR characteristics of SSD inks. p,q) FET and IV characteristics of rGO. Evaluation of cytotoxicity using human epithelial lung cells (r, untreated) for various SSD inks (thiol, amines, and chiral), such as mercapto hexanol (s (i, ii)), mercapto benzoic acid (t (i, ii)), dietha- nolamine (u (i, ii)), diethylamine (v (i, ii)), 2-amino-4-chlorobenzoic acid (w (i, ii)) at (i) 10 µg mL−1 and (ii) 100 µg mL−1 dosages, respectively (24 h). x) The live cell percentages for various functionalized-rGO ink concentrations and types of dosage after 24 h treatment.

    Techniques Used:

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    Article Snippet: This prepared ink was subsequently utilized for inkjet printing, utilizing a dispensing system with a piezoelectric nozzle (specifically, the Scienion model sciFLEXARRAYER S3), onto paper substrate the printed sensing pixels.

    Article Title: Chemical Tomography of Cancer Organoids and Cyto-Proteo-Genomic Development Stages Through Chemical Communication Signals.
    Article Snippet: This prepared ink was subsequently utilized for inkjet printing, utilizing a dispensing system with a piezoelectric nozzle (specifically, the Scienion model sciFLEXARRAYER S3), onto paper substrate the printed sensing pixels.

    Modification:

    Article Title: Spin-Controlled Helical Quantum Sieve Chiral Spectrometer.
    Article Snippet: .. Binder-Free Inkjet Printing Recipe for Functionalized Graphene Ink: The dried functionalized hybrid rGO powders modified with a selection of chiral and achiral ligands was redispersed in DMF and sonicated at low power for ≈1–2 min to disperse the ink that was subsequently used for inkjet printing (Dispensing system with piezoelectric nozzle [Scienion, model sciFLEXARRAYER S3]) on paper for preparing the SSDs. ..

    Selection:

    Article Title: Spin-Controlled Helical Quantum Sieve Chiral Spectrometer.
    Article Snippet: .. Binder-Free Inkjet Printing Recipe for Functionalized Graphene Ink: The dried functionalized hybrid rGO powders modified with a selection of chiral and achiral ligands was redispersed in DMF and sonicated at low power for ≈1–2 min to disperse the ink that was subsequently used for inkjet printing (Dispensing system with piezoelectric nozzle [Scienion, model sciFLEXARRAYER S3]) on paper for preparing the SSDs. ..

    Sonication:

    Article Title: Spin-Controlled Helical Quantum Sieve Chiral Spectrometer.
    Article Snippet: .. Binder-Free Inkjet Printing Recipe for Functionalized Graphene Ink: The dried functionalized hybrid rGO powders modified with a selection of chiral and achiral ligands was redispersed in DMF and sonicated at low power for ≈1–2 min to disperse the ink that was subsequently used for inkjet printing (Dispensing system with piezoelectric nozzle [Scienion, model sciFLEXARRAYER S3]) on paper for preparing the SSDs. ..

    Article Title: Ultra‐Fast Portable and Wearable Sensing Design for Continuous and Wide‐Spectrum Molecular Analysis and Diagnostics
    Article Snippet: .. The dried functionalized powder (FDrGO) was redispersed in DMF and sonicated at low power for ≈1–2 min to disperse the ink, subsequently used for inkjet printing (Dispensing system with piezoelectric nozzle (Scienion, model sciFLEXARRAYER S3)) on paper. ..

    Transferring:

    Article Title: Fabricating and printing chemiresistors based on monolayer-capped metal nanoparticles.
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    Control:

    Article Title: Fabricating and printing chemiresistors based on monolayer-capped metal nanoparticles.
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    Transmission Assay:

    Article Title: Fabricating and printing chemiresistors based on monolayer-capped metal nanoparticles.
    Article Snippet: ● Hot plate (Prazitherm, Harry Gestigkeit, cat. no. 16271017) ● Headway Resist Spinner (Laurell Technologies; model RWM32) ● Contact mask aligner (Karl Suss MicroTech; model MA-6) ● Soda-lime photolithography masks (substrate size 5′:127.0 ×127.0 mm; Technion)—two masks: one for electrode array photolithography, the other for creating the microbarrier using photosensitive polymer SU-8 (Supplementary Data 1 and Supplementary Software) ● Optical microscope (Olympus Optical, model BX60F-3) ● Plasma descumming system (Axis HF-8 Multimode) ● E-beam evaporation system (Evatec, cat. no. BAK-501) ● Ultrasonic Cleaning Bath, S30 (Elmasonic) ● Dicer machine DAD 3350 (Disco; serial no. KB4725), dicing tape 80 μm ● Tweezers (Rubis, 2A-SA, cat. no. 2-8028-09; 2A Axal, cat. no. 2-5149-09; F Axal, cat. no. 2-5149-20) .. ● Desiccator vacuum, lab companion cabine (Scienceware, cat. no. BAF424004021-1EA) ● Dishes, crystallizing, 140 × 75 mm (Pyrex; Technion, cat. no. 110000705) ● Petri dishes, complete 150 × 30 mm (Pyrex; Technion, cat. no. 110000757) ● Round-bottomed flask (Duran, cat. no.21741440) ● Digital pipettes, (Gilson NEO, P100 cat. no. F123615, P200 cat. no. F123601, P1000 cat. no. F123602) ● Pipette tips, Yellow 20–200 μl (Corning, cat. no. 4866) ● Separatory funnels (Kemtech America Synthware, cat. no. 31-501-630) ● Weights (Kern, cat. no. WB1010788) ● Evaporator, Hei-VAP Advantage (Heidolph, serial no. 200362253) ● Vacuum pump (Labotal; MZ 2C NT, serial no. 104539206) ● Digital hotplate stirrer, ‘witeg’ WiseStir, SMHS systematic multi-hotplate stirrers, 6- places, ceramiccoated plates, independent heating and stirring control, back light LCD, up to 350 °C, 80–1,500 rpm; stirring magnet(s): PTFE (Witeg Labortechnik, item no. DH.WMH03506) ● Precision Balance (Precisa, cat. no. LX-220A) Test, printing and other equipment ● Dispensing system with piezoelectric nozzle (Scienion, model sciFLEXARRAYER S3) ● Vacuum oven, ThermoStable OV (WOV) series (Daihan Scientific, cat. no. 2268) ● Multimeter/data acquisition/switch system, Keithley model 2701 multifunction switch (Tektronix) ● Transmission electron microscope, Tecnai T12G2 (FEI, model Tecnai G2 T20 S-Twin) ● Respirator mask with filter (Scott Safety, cat. no. A1B1E1K1-P2/P3) ● Vacuum pump (Edwards, cat. no. XDS5 A72501903) 2980 NATURE PROTOCOLS | VOL 16 | JUNE 2021 | 2968–2990 |www.nature.com/nprot ● Stainless steel chamber (home-made, Technion) with a volume of 100 cm3 ● Computerized calibration system (Umwelttechnik MCZ, Germany), model CGM 2000 (serial no. 1101-011) ● Nitrogen generator, model M-30 (On Site Gas) Software ● CleWin ● LabVIEW National Instruments ● MATLAB Procedure Electrode array microfabrication in clean room conditions ● Timing 6–8 h (depends on number of wafers) c CRITICAL Steps 1–25 must be performed in a clean room facility (for this work, a class 1,000 (ISO 6) with a class 100 (ISO 5) work area was used). ..

    Microscopy:

    Article Title: Fabricating and printing chemiresistors based on monolayer-capped metal nanoparticles.
    Article Snippet: ● Hot plate (Prazitherm, Harry Gestigkeit, cat. no. 16271017) ● Headway Resist Spinner (Laurell Technologies; model RWM32) ● Contact mask aligner (Karl Suss MicroTech; model MA-6) ● Soda-lime photolithography masks (substrate size 5′:127.0 ×127.0 mm; Technion)—two masks: one for electrode array photolithography, the other for creating the microbarrier using photosensitive polymer SU-8 (Supplementary Data 1 and Supplementary Software) ● Optical microscope (Olympus Optical, model BX60F-3) ● Plasma descumming system (Axis HF-8 Multimode) ● E-beam evaporation system (Evatec, cat. no. BAK-501) ● Ultrasonic Cleaning Bath, S30 (Elmasonic) ● Dicer machine DAD 3350 (Disco; serial no. KB4725), dicing tape 80 μm ● Tweezers (Rubis, 2A-SA, cat. no. 2-8028-09; 2A Axal, cat. no. 2-5149-09; F Axal, cat. no. 2-5149-20) .. ● Desiccator vacuum, lab companion cabine (Scienceware, cat. no. BAF424004021-1EA) ● Dishes, crystallizing, 140 × 75 mm (Pyrex; Technion, cat. no. 110000705) ● Petri dishes, complete 150 × 30 mm (Pyrex; Technion, cat. no. 110000757) ● Round-bottomed flask (Duran, cat. no.21741440) ● Digital pipettes, (Gilson NEO, P100 cat. no. F123615, P200 cat. no. F123601, P1000 cat. no. F123602) ● Pipette tips, Yellow 20–200 μl (Corning, cat. no. 4866) ● Separatory funnels (Kemtech America Synthware, cat. no. 31-501-630) ● Weights (Kern, cat. no. WB1010788) ● Evaporator, Hei-VAP Advantage (Heidolph, serial no. 200362253) ● Vacuum pump (Labotal; MZ 2C NT, serial no. 104539206) ● Digital hotplate stirrer, ‘witeg’ WiseStir, SMHS systematic multi-hotplate stirrers, 6- places, ceramiccoated plates, independent heating and stirring control, back light LCD, up to 350 °C, 80–1,500 rpm; stirring magnet(s): PTFE (Witeg Labortechnik, item no. DH.WMH03506) ● Precision Balance (Precisa, cat. no. LX-220A) Test, printing and other equipment ● Dispensing system with piezoelectric nozzle (Scienion, model sciFLEXARRAYER S3) ● Vacuum oven, ThermoStable OV (WOV) series (Daihan Scientific, cat. no. 2268) ● Multimeter/data acquisition/switch system, Keithley model 2701 multifunction switch (Tektronix) ● Transmission electron microscope, Tecnai T12G2 (FEI, model Tecnai G2 T20 S-Twin) ● Respirator mask with filter (Scott Safety, cat. no. A1B1E1K1-P2/P3) ● Vacuum pump (Edwards, cat. no. XDS5 A72501903) 2980 NATURE PROTOCOLS | VOL 16 | JUNE 2021 | 2968–2990 |www.nature.com/nprot ● Stainless steel chamber (home-made, Technion) with a volume of 100 cm3 ● Computerized calibration system (Umwelttechnik MCZ, Germany), model CGM 2000 (serial no. 1101-011) ● Nitrogen generator, model M-30 (On Site Gas) Software ● CleWin ● LabVIEW National Instruments ● MATLAB Procedure Electrode array microfabrication in clean room conditions ● Timing 6–8 h (depends on number of wafers) c CRITICAL Steps 1–25 must be performed in a clean room facility (for this work, a class 1,000 (ISO 6) with a class 100 (ISO 5) work area was used). ..

    Software:

    Article Title: Fabricating and printing chemiresistors based on monolayer-capped metal nanoparticles.
    Article Snippet: ● Hot plate (Prazitherm, Harry Gestigkeit, cat. no. 16271017) ● Headway Resist Spinner (Laurell Technologies; model RWM32) ● Contact mask aligner (Karl Suss MicroTech; model MA-6) ● Soda-lime photolithography masks (substrate size 5′:127.0 ×127.0 mm; Technion)—two masks: one for electrode array photolithography, the other for creating the microbarrier using photosensitive polymer SU-8 (Supplementary Data 1 and Supplementary Software) ● Optical microscope (Olympus Optical, model BX60F-3) ● Plasma descumming system (Axis HF-8 Multimode) ● E-beam evaporation system (Evatec, cat. no. BAK-501) ● Ultrasonic Cleaning Bath, S30 (Elmasonic) ● Dicer machine DAD 3350 (Disco; serial no. KB4725), dicing tape 80 μm ● Tweezers (Rubis, 2A-SA, cat. no. 2-8028-09; 2A Axal, cat. no. 2-5149-09; F Axal, cat. no. 2-5149-20) .. ● Desiccator vacuum, lab companion cabine (Scienceware, cat. no. BAF424004021-1EA) ● Dishes, crystallizing, 140 × 75 mm (Pyrex; Technion, cat. no. 110000705) ● Petri dishes, complete 150 × 30 mm (Pyrex; Technion, cat. no. 110000757) ● Round-bottomed flask (Duran, cat. no.21741440) ● Digital pipettes, (Gilson NEO, P100 cat. no. F123615, P200 cat. no. F123601, P1000 cat. no. F123602) ● Pipette tips, Yellow 20–200 μl (Corning, cat. no. 4866) ● Separatory funnels (Kemtech America Synthware, cat. no. 31-501-630) ● Weights (Kern, cat. no. WB1010788) ● Evaporator, Hei-VAP Advantage (Heidolph, serial no. 200362253) ● Vacuum pump (Labotal; MZ 2C NT, serial no. 104539206) ● Digital hotplate stirrer, ‘witeg’ WiseStir, SMHS systematic multi-hotplate stirrers, 6- places, ceramiccoated plates, independent heating and stirring control, back light LCD, up to 350 °C, 80–1,500 rpm; stirring magnet(s): PTFE (Witeg Labortechnik, item no. DH.WMH03506) ● Precision Balance (Precisa, cat. no. LX-220A) Test, printing and other equipment ● Dispensing system with piezoelectric nozzle (Scienion, model sciFLEXARRAYER S3) ● Vacuum oven, ThermoStable OV (WOV) series (Daihan Scientific, cat. no. 2268) ● Multimeter/data acquisition/switch system, Keithley model 2701 multifunction switch (Tektronix) ● Transmission electron microscope, Tecnai T12G2 (FEI, model Tecnai G2 T20 S-Twin) ● Respirator mask with filter (Scott Safety, cat. no. A1B1E1K1-P2/P3) ● Vacuum pump (Edwards, cat. no. XDS5 A72501903) 2980 NATURE PROTOCOLS | VOL 16 | JUNE 2021 | 2968–2990 |www.nature.com/nprot ● Stainless steel chamber (home-made, Technion) with a volume of 100 cm3 ● Computerized calibration system (Umwelttechnik MCZ, Germany), model CGM 2000 (serial no. 1101-011) ● Nitrogen generator, model M-30 (On Site Gas) Software ● CleWin ● LabVIEW National Instruments ● MATLAB Procedure Electrode array microfabrication in clean room conditions ● Timing 6–8 h (depends on number of wafers) c CRITICAL Steps 1–25 must be performed in a clean room facility (for this work, a class 1,000 (ISO 6) with a class 100 (ISO 5) work area was used). ..



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