• Tidak ada hasil yang ditemukan

REFERENCES Acord, K. (2021).

N/A
N/A
Protected

Academic year: 2023

Membagikan "REFERENCES Acord, K. (2021)."

Copied!
6
0
0

Teks penuh

(1)

REFERENCES

Acord, K. (2021). Electrochemical Impedance Spectroscopy (EIS). LibreTexts.

https://eng.libretexts.org/Bookshelves/Materials_Science/Supplemental_Modules _(Materials_Science)/Insulators/Electrochemical_Impedance_Spectroscopy Adkins, J., Boehle, K., & Henry, C. (2015). Electrochemical paper‐based microfluidic

devices. Electrophoresis, 36(16), 1811–1824.

Alafeef, M., Dighe, K., Moitra, P., & Pan, D. (2020). Rapid, Ultrasensitive, and Quantitative Detection of SARS-CoV-2 Using Antisense Oligonucleotides Directed Electrochemical Biosensor Chip. ACS Nano.

Ambani, S. K. (2019). FABRICATION OF ULTRAFILTRATION MEMBRANE FROM POLYETHYLENE TEREPHTHALATE BOTTLE WASTE AND THE EFFECT OF POLYETHYLENE GLYCOL AS ADDITIVE ON THE MEMBRANE PERFORMANCE. Swiss German University.

Aoki, P. H. B., Alessio, P., Furini, L. N., Constantino, C. J. L., Neves, T. T. A. T., Paulovich, F. V, De Oliveira, M. C. F., & Oliveira Jr, O. N. (2013). Molecularly designed layer-by-layer (LbL) films to detect catechol using information visualization methods. Langmuir, 29(24), 7542–7550.

Bagherbaigi, S., Córcoles, E. P., & Wicaksono, D. H. B. (2014). Cotton fabric as an immobilization matrix for low-cost and quick colorimetric enzyme-linked immunosorbent assay (ELISA). Analytical Methods, 6(18), 7175–7180.

Choi, W., Shin, H.-C., Kim, J. M., Choi, J.-Y., & Yoon, W.-S. (2020). Modeling and applications of electrochemical impedance spectroscopy (EIS) for lithium-ion batteries. Journal of Electrochemical Science and Technology, 11(1), 1–13.

Cook, J. S. (2018). What is a Capacitor? Definition, Uses & Formulas in Series and Parallel. https://www.arrow.com/en/research-and-events/articles/capacitor- basics-definition-uses-and-formulas-in-series-and-parallel

(2)

Daghighi, Y. (2015). Microfluidic technology and its biomedical applications.

Journal of Thermal Engineering, 1(7), 621–626.

Daikuzono, C. M., Delaney, C., Morrin, A., Diamond, D., Florea, L., & Oliveira, O.

N. (2019). Paper based electronic tongue–a low-cost solution for the distinction of sugar type and apple juice brand. Analyst, 144(8), 2827–2832.

Dubey, R., & Bhushan, R. (2018). Specificity versus selectivity: twin aims of aptasensors in bioanalysis. Future Science.

Egunov, A. I., Dou, Z., Karnaushenko, D. D., Hebenstreit, F., Kretschmann, N., Akgün, K., Ziemssen, T., Karnaushenko, D., Medina‐Sánchez, M., & Schmidt, O. G. (2021). Impedimetric Microfluidic Sensor‐in‐a‐Tube for Label‐Free Immune Cell Analysis. Small, 17(5), 2002549.

Eltahir, M. A. (2020). Saliva: In Relation to COVID19.

Fábián, T. K., Fejérdy, P., & Csermely, P. (2007). Saliva in health and disease, chemical biology of. Wiley Encyclopedia of Chemical Biology, 1–9.

Fani, M., Zandi, M., Soltani, S., & Abbasi, S. (2020). Future developments in biosensors for field‐ready SARS‐CoV‐2 virus diagnostics. Biotechnology and Applied Biochemistry.

Heriawan, E. V. (2018). MICROFLUIDIC FABRIC-BASED ELECTROCHEMICAL DEVICE FOR GLUCOSE MONITORING IN BLOOD. Swiss German University.

Immohr, L. I., Turner, R., & Pein-Hackelbusch, M. (2016). Impact of sodium lauryl sulfate in oral liquids on e-tongue measurements. International Journal of Pharmaceutics, 515(1–2), 441–448.

Instruments, G. (2007). Basics of electrochemical impedance spectroscopy. G.

Instruments, Complex Impedance in Corrosion, 1–30.

Iorgulescu, G. (2009). Saliva between normal and pathological. Important factors in

(3)

determining systemic and oral health. Journal of Medicine and Life, 2(3), 303.

Julian, T., Hidayat, S. N., Rianjanu, A., Dharmawan, A. B., Wasisto, H. S., &

Triyana, K. (2020). Intelligent Mobile Electronic Nose System Comprising a Hybrid Polymer-Functionalized Quartz Crystal Microbalance Sensor Array. ACS Omega, 5(45), 29492–29503.

Kusumocahyo, S. P., Ambani, S. K., Kusumadewi, S., Sutanto, H., Widiputri, D. I., &

Kartawiria, I. S. (2020). Utilization of used polyethylene terephthalate (PET) bottles for the development of ultrafiltration membrane. Journal of Environmental Chemical Engineering, 8(6), 104381.

Lasia, A. (2002). Electrochemical impedance spectroscopy and its applications. In Modern aspects of electrochemistry (pp. 143–248). Springer.

Lasisi, T. J., & Fasanmade, A. A. (2012). Salivary flow and composition in diabetic and non-diabetic subjects.

Lenik, J., Wesoły, M., Ciosek, P., & Wróblewski, W. (2016). Evaluation of taste masking effect of diclofenac using sweeteners and cyclodextrin by a potentiometric electronic tongue. Journal of Electroanalytical Chemistry, 780, 153–159.

Lozano, D., & Cantero, M. (1997). Difference between analytical sensitivity and detection limit. American Journal of Clinical Pathology, 107(5), 619.

Malhotra, S., Verma, A., Tyagi, N., & Kumar, V. (2017). Biosensors: principle, types and applications. Int. J. Adv. Res. Innov. Ideas Educ., 3(2), 3639–3644.

Malon, R. S. P., Chua, K. Y., Wicaksono, D. H. B., & Córcoles, E. P. (2014). Cotton fabric-based electrochemical device for lactate measurement in saliva. Analyst, 139(12), 3009–3016.

Massart, D. L., Dijkstra, A., & Kaufman, L. (1978). Evaluation and optimization of laboratory methods and analytical procedures.

(4)

Neyraud, E., Schwartz, C., Brignot, H., Jouanin, I., Tremblay-Franco, M., Canlet, C.,

& Tournier, C. (2020). Longitudinal analysis of the salivary metabolome of breast-fed and formula-fed infants over the first year of life. Metabolomics, 16(3), 1–10.

Nikhil, B., Pawan, J., Nello, F., & Pedro, E. (2016). Introduction to biosensors. Essays in Biochemistry, 60(1), 1–8.

Nilghaz, A., Bagherbaigi, S., Lam, C. L., Mousavi, S. M., Cόrcoles, E. P., &

Wicaksono, D. H. B. (2015). Multiple semi-quantitative colorimetric assays in compact embeddable microfluidic cloth-based analytical device (μCAD) for effective point-of-care diagnostic. Microfluidics and Nanofluidics, 19(2), 317–

333.

Nilghaz, A., Wicaksono, D. H. B., Gustiono, D., Majid, F. A. A., Supriyanto, E., &

Kadir, M. R. A. (2012). Flexible microfluidic cloth-based analytical devices using a low-cost wax patterning technique. Lab on a Chip, 12(1), 209–218.

Pedersen, A. M. L., Sørensen, C. E., Proctor, G. B., Carpenter, G. H., & Ekström, J.

(2018). Salivary secretion in health and disease. Journal of Oral Rehabilitation, 45(9), 730–746.

Peveler, W. J., Yazdani, M., & Rotello, V. M. (2016). Selectivity and specificity: pros and cons in sensing. ACS Sensors, 1(11), 1282–1285.

Pietragalla, J., & Pask, A. (2012). Stomatal conductance. Physiological Breeding II: A Field Guide to Wheat Phenotyping. A. Pask, J. Pietragalla, D. Mullan & M.

Reynolds (Eds.). México, CIMMYT, 15–17.

Podrażka, M., Bączyńska, E., Kundys, M., Jeleń, P. S., & Witkowska Nery, E. (2018).

Electronic tongue—a tool for all tastes? Biosensors, 8(1), 3.

Richards, E., Bessant, C., & Saini, S. (2002). Multivariate data analysis in electroanalytical chemistry. Electroanalysis: An International Journal Devoted to Fundamental and Practical Aspects of Electroanalysis, 14(22), 1533–1542.

(5)

Riul, A., Dos Santos, D. S., Wohnrath, K., Di Tommazo, R., Carvalho, A., Fonseca, F. J., Oliveira, O. N., Taylor, D. M., & Mattoso, L. H. C. (2002). Artificial taste sensor: efficient combination of sensors made from Langmuir− Blodgett films of conducting polymers and a ruthenium complex and self-assembled films of an azobenzene-containing polymer. Langmuir, 18(1), 239–245.

Ronkainen, N. J., Halsall, H. B., & Heineman, W. R. (2010). Electrochemical biosensors. Chemical Society Reviews, 39(5), 1747–1763.

Rowa’Al Ramahi, A. N. Z., & Abu-Khalaf, N. (2019). Evaluating the potential use of electronic tongue in early identification and diagnosis of bacterial infections.

Infection and Drug Resistance, 12, 2445.

Satria. (2020). Breath of Swab Test Class for Covid-19 Detection: GeNose by UGM.

Gajah Mada University. https://ugm.ac.id/id/berita/20051-genose-deteksi-covid- 19-cepat-mudah-dan-akurat-hanya-dengan-hembusan-nafas

Seo, G., Lee, G., Kim, M. J., Baek, S.-H., Choi, M., Ku, K. B., Lee, C.-S., Jun, S., Park, D., & Kim, H. G. (2020). Rapid detection of COVID-19 causative virus (SARS-CoV-2) in human nasopharyngeal swab specimens using field-effect transistor-based biosensor. ACS Nano, 14(4), 5135–5142.

Shaikh, M. O., Srikanth, B., Zhu, P.-Y., & Chuang, C.-H. (2019). Impedimetric Immunosensor Utilizing Polyaniline/Gold Nanocomposite-Modified Screen- Printed Electrodes for Early Detection of Chronic Kidney Disease. Sensors, 19(18), 3990.

Shrivastava, A., & Gupta, V. (2011). Methods for the determination of limit of detection and limit of quantitation of the analytical methods. Chronicles of Young Scientists, 2(1), 21.

Tahara, Y., & Toko, K. (2013). Electronic tongues–a review. IEEE Sensors Journal, 13(8), 3001–3011.

Van Stralen, K. J., Stel, V. S., Reitsma, J. B., Dekker, F. W., Zoccali, C., & Jager, K.

(6)

J. (2009). Diagnostic methods I: sensitivity, specificity, and other measures of accuracy. Kidney International, 75(12), 1257–1263.

Whitesides, G. M. (2006). The origins and the future of microfluidics. Nature, 442(7101), 368–373.

Wintjens, A. G. W. E., Hintzen, K. F. H., Engelen, S. M. E., Lubbers, T., Savelkoul, P. H. M., Wesseling, G., van der Palen, J. A. M., & Bouvy, N. D. (2020).

Applying the electronic nose for pre-operative SARS-CoV-2 screening. Surgical Endoscopy, 1–8.

Referensi

Dokumen terkait

Untuk aset keuangan yang diukur dengan biaya perolehan diamortisasi, jika, pada periode berikutnya, jumlah penurunan nilai berkurang dan penurunan dapat dikaitkan secara

Sehubungan dengan telah ditemukan SARS-CoV-2 varian baru di South Wales, Inggris yaitu SARS-CoV-2 VUI 202012/01 dan terjadinya peningkatan persebaran Virus SARS-CoV-2 pada

konsep usulan besaran tarif pelayanan jasa kapal, tarif pelayanan jasa barang yang disusun oleh Badan Usaha Pelabuhan sebelum dikonsultasikan kepada Menteri terlebih

Molekul DNA total yang diperoleh dari Sungai Kampar Kiri dan Tapung Hilir memiliki kualitas dan kuantitas yang berbeda-beda (Gambar 1).. apogon menggunakan 1%

Dalam rangka menindak lanjuti urusan wajib perencanaan dan pengendalian pembangunan maka didalam Peraturan Pemerintah Nomor 54 Tahun 2010 tentang pelaksanaan peraturan

Bawang putih memiliki kandungan senyawa aktif berupa alil disulfida dan alil trisulfida yang mampu menghalangi perlekatan protein S dari SARS-CoV-2 dengan reseptor

Jadi indikator persepsi dapat disimpulkan dimana objek yang menimbulkan stimulus yaitu remaja hamil di luar nikah kemudian mengenai alat indera berupa mata,

Dengan demikian dapat disimpulkan berdasarkan hasil perhitungan maka pengaruh komunikasi terhadap kualitas pelayanan surat pengantar pembuatan izin mendirikan bangunan di