研究成果

·•Tseng YT, Yu YH, Yeh YY, Mai PC, Huang TT, Huang CJ, Chau LK*, Chen YL*. Femtomolar-level detection of procalcitonin using a split aptamer-based fiber optic nanogold-linked sorbent assay for diagnosis of sepsis. Talanta 2025, 293, 128150.

•Pham NT, Wang CH, Chen CH, Tseng YT, Guthula LS, Chau LK*, Yu CY*, Chen YL*. Integration of CRISPR/Cas12a and a fiber optic particle plasmon resonance sensor for single nucleotide polymorphism detection in an aldehyde dehydrogenase 2 gene. ACS Sens. 2025, 10, 5047-5055.

•Fong ZH, Wang CH, Yang CY, Kan HC, Lin YJ, Chen YL, Shen YC, Yu YC, Chau LK*, Io CW*, Wang SC*. Spectral flow cytometry based on integration of surface-enhanced Raman scattering nanoprobes with microfluidic chip for detection of bacteria. Microchem. J. 2025, 212, 113436.

•Gao SY. Chang HE, Wang CH, Chi MP, Lin CC, Chiang CY, Wang CH, Huang CJ, Li PJ*, Chau LK*. Oriented immobilization of antibodies on suspended nanoparticle and substrate surfaces via one-step catch-and-link approach for development of biosensors. Microchem. J. 2025, 21, 112967.

•Barshilia D, Komaram AC, Chau LK*, Chang GE*. Waveguide-enhanced nanoplasmonic biosensor for ultrasensitive and rapid DNA detection. Micromachines 2024, 15, 1169.

•Hsu WT, Lin YC, Yang HC, Barshilia D, Chen PL, Huang FC, Chau LK*, Hsieh WH*, Chang GE*. Label-free biosensor based on particle plasmon resonance coupled with diffraction grating waveguide. Sensors 2024, 24, 5536.

•Ngo LT, Chaudhari P, Wang WK, Tseng YT, Kuo PL, Huang CJ, Chiang CY, Chau LK*, Huang TT*. Noninvasive prenatal genetic screening of cell-free fetal DNA for early prediction of -thalassemia using fiber optic nanogold-linked sorbent assay. ACS Sens. 2024, 9(8), 4207-4215.

•Wang KT, Chen YY, Wang CH, Hsu KF, Chau LK*, Wang SC*, Chen YL*. Ultrasensitive amplification-free detection of circulating miRNA via droplet-based processing of SERS tagmiRNAmagnetic nanoparticle sandwich nanocomplex on paper-based electrowetting-on-dielectric platform. Analyst 2024, 149, 981-1987.

•Barshilia D, Huang JJ, Komaram AC, Chen YC, Chen CD, Syu MY, Chao WC, Chau LK*, Chang GE*. Ultrasensitive and rapid detection of procalcitonin via waveguide-enhanced nanogold-linked immunosorbent assay for early sepsis diagnosis. Nano Lett. 2024, 24, 2596-2602.

•Tseng YT, Chiu YC, Pham VD, Wu WH, Le-Vu TT, Wang CH, Kuo SW, Chan MWY, Lin CH, Li SC, Li YD, Kan HC, Lin JY, Chau LK*, Hsu CC*. Ultrasensitive upconversion nanoparticle immunoassay for human serum cardiac troponin I detection achieved with resonant waveguide grating. ACS Sens. 2024, 9, 455-463.

•王智賢、周禮君 「生物感測器之市場與技術分析」 微系統暨奈米科技協會會刊 2023, 50, 32-37.

•Chen YY, Huang ZH, Wang CH, Wang KH, Hsu CW, Chen HR, Wu CL, Chau LK*, Wang SC*. Inkjet-printed disposable electrowetting-on-dielectric chip for nervous necrosis virus detection using immuno Raman sensing beads and magnetic nanoparticle trapping. J. Taiwan Inst. Chem. Eng. 2023, 152, 105165.

•Chang JH, Wang CH, Chang TC, Wen WC, Huang CJ, Chen YL*, Chau LK*. Apolipoprotein E genetic analysis in unamplified genomic DNA extracts by ligase reaction and fiber optic particle plasmon resonance biosensor. Sens. Actuat. B 2023, 393, 134237.

•Chaudhari P, Chau LK*, Ngo LT, Chang TC, Chen YL, Huang KT*. A competitive assay for ultrasensitive detection of organophosphate pesticides based on fiber optic particle plasmon resonance biosensor and an acetylcholinesterase binding peptide. Anal. Chem. 2023, 95, 14600-14607.

•Chen YY, Wu CL, Hsu CW, Wang CH, Su CR, Huang CJ, Chen HR*, Chau LK*, Wang SC*. Trace determination of grouper nervous necrosis virus in contaminated larvae and pond water samples using label-free fiber optic nanoplasmonic biosensor. Biosensors 2022, 12, 907.

•Barshilia D, Komaram AC, Chen PC, Chau LK*, Chang GE*. Slab waveguide-based particle plasmon resonance optofluidic biosensor for rapid and label free detection. Analyst 2022, 147, 4417-4425.

•Guthula LS, Yeh KT, Huang WL, Chen CH, Chen YL, Huang CJ, Chau LK*, Chan MWY*, Lin SH*. Quantitative and amplification-free detection of SOCS-1 CpG methylation percentage analyses in gastric cancer by fiber optic nanoplasmonic biosensor. Biosens. Bioelectron. 2022, 214, 114540.

•Chang TC, Sun AY, Huang YC, Wang CH, Wang SC, Chau LK*. Integration of power-free and self-contained microfluidic chip with fiber optic particle plasmon resonance aptasensor for rapid detection of SARS-CoV-2 nucleocapsid protein. Biosensors 2022, 12, 785.

•Liu HL, Tseng YT, Lai MC, Chau LK*. Ultrasensitive and rapid detection of N-terminal pro-B-type natriuretic peptide (NT-proBNP) using fiber optic nanogold-linked immunosorbent assay. Biosensors 2022, 12, 746.

•Chen SW, Hong TTA, Chiang CT, Chau LK, Huang CJ*. Versatile thiol- and amino-functionalized silatranes for PEGylation and immobilization of gold nanoparticles. J. Taiwan Inst. Chem. Eng. 2022, 132, 104129.

•Wang SF, Lin WY, Dai JS, Chen YL, Chen Yf, Chau LK*. Detection of amphetamine-type stimulants using sample derivatization and SALDI-TOF-MS. J. Chin. Chem. Soc. 2021, 68, 2294-2302.

•Chen YC, Chou YC, Chang JH, Chen LT, Huang CJ, Chau LK*, Chen YL*. Dual-functional gold-iron oxide core-satellite hybrid nanoparticles for sensitivity enhancement in biosensors via nanoplasmonic and preconcentration effects. Analyst 2021, 146, 6935-6943.

•Fan SM, Chiang CY, Tseng YT, Wu TY, Chen YL, Huang CJ, Chau LK*. Detection of Hg(II) at part-per-quadrillion levels by fiber optic plasmonic absorption using DNA hairpin and DNA-gold nanoparticle conjugates. ACS Appl. Nano Mater. 2021, 4, 10128-10135.

•王智賢、周禮君 「表面增強拉曼散射標籤在免疫分析之應用」 化學 2021, 79, 167-178.

•Ngo LT, Wang WK, Tseng YT, Chang TC, Kuo PL, Chau LK*, Huang TT*. MutS protein-based fiber optic particle plasmon resonance biosensor for detecting single nucleotide polymorphisms. Anal. Bioanl. Chem. 2021, 413, 3329-3337.

•Chen CH, Chiang CY*, Wu CW, Wang CT*, Chau LK*. Integrated graphene oxide with noble metal nanoparticles to develop high sensitivity fiber optic particle plasmon resonance (FOPPR) biosensor for biomolecules determination. Nanomater. 2021, 11, 635.

•Vu DT, Vu-Le TT, Nguyen VN, Le QM, Wang CRC, Chau LK, Yang TS, Chan MWY, Lee CI, Ting CC, Lin JY, Kan HC, Hsu CC*. Gold nanorods conjugated upconversion nanoparticles nanocomposites for simultaneous bioimaging, local temperature sensing and photothermal therapy of OML-1 oral cancer cells. Int. J. Smart Nano Mater. 2021, 12, 49-71.

•Huang CC*, Lai YS, Wang CH, Chau LK, Chen W*. Label-free SERS characterization of snake venoms by exploring the cysteine environs with bone-shaped gold nanoparticles. J. Mater. Chem. B 2020, 8, 10744-10753.

•Chen YJ, Chen YY, Wang KH, Wang CH, Yang CY, Chau LK*, Wang SC*. Integration of a thermoelectric heating unit with ionic wind-induced droplet centrifugation chip to develop miniaturized evaporation concentration device for rapid determination of Salmonella on food samples using antibody-functionalized SERS tags. Sensors 2020, 20, 7177.

•Barshilia D, Chau LK, Chang GE*. Low-cost planar waveguide-based optofluidic sensor for real-time refractive index sensing. Opt. Express 2020, 28, 27337.

•Chang TC, Chiang CY, Lin MH, Chen IK, Chau LK*, Hsu DS*, Shieh SS, Kuo CJ, Wang SC, Chen Yf. Fiber optic particle plasmon resonance immunosensor for rapid and sensitive detection of methamphetamine based on competitive inhibition. Microchem. J. 2020, 157, 105026.

•Chaudhari PP, Chau LK*, Tseng YT, Huang CJ, Chen YL. A fiber optic nanoplasmonic biosensor for the sensitive detection of ampicillin and its analogs. Microchim. Acta 2020, 187, 396.
•Lee TJ, Chau LK, Huang CJ*. Controlled silanization: high molecular regularity of functional thiol groups on siloxane coatings. Langmuir 2020, 36, 5935-5943.

•Tseng YT, Li WY, Yu YW, Chiang CY, Liu SQ, Chau LK*, Lai NS*, Chou CC*. Fiber optic particle plasmon resonance biosensor for label-free detection of nucleic acids and its application to HLA-B27 mRNA detection in patients with ankylosing spondylitis. Sensors 2020, 20, 3137.

•Chiang CY, Huang TT, Wang CH, Huang CJ, Tsai TH, Yu SN, Chen YT, Hong SW, Hsu CW, Chang TC, Chau LK*. Fiber optic nanogold-linked immunosorbent assay for rapid detection of procalcitonin at femtomolar concentration level. Biosens. Bioelectron. 2020, 151, 111871.

•Chen WY, Wang CH, Wang KH, Chen YL, Chau LK*, Wang SC*. Development of microfluidic concentrator using ion concentration polarization mechanism to assist trapping magnetic nanoparticle-bound miRNA to detect with Raman tags. Biomicrofluidics 2020, 14, 014102.

•曾彥達、周禮君 「金奈米粒子合成與感測教學實驗模組」 台灣化學教育 2019, Vol. 31 (May 14, 2019).

• Su SR, Chen YY, Li KY, Fang YC, Wang CH, Yang CY, Chau LK*, Wang SC*. Electrohydrodynamically enhanced drying droplets for concentration of Salmonella bacteria prior to their detections using antibody-functionalized SERS-reporter submicron beads. Sens. Actuat. B 2019, 283, 384-389.

•Wang YS, Yau S, Chau LK, Mohamed A, Huang CJ*. Functional biointerfaces based on mixed zwitterionic self-assembled monolayers for biosensing applications. Langmuir 2019, 35, 1652-1661.

•Vu DT, Chiu HW, Nababan R, Le QM, Kuo SW, Chau LK, Ting CC, Kan HC, Hsu CC*. Enhancing upconversion luminescence emission of rare earth nanophosphors in aqueous solution with thousands fold enhancement factor by low refractive index resonant waveguide grating. ACS Photonics 2018, 5, 3263-3271.

•Wu WT*, Chen CH, Chiang CY, Chau LK*. Effect of surface coverage of gold nanoparticles on refractive index sensitivity in fiber-optic nanoplasmonic sensing. Sensors 2018, 18, 1759.

•Liu IC, Chen PC, Chau LK, Chang GE*. Optofluidic refractive-index sensors employing bent waveguide structures for low-cost, rapid chemical and biomedical sensing. Opt. Express 2018, 26, 273-283.

•Lin YC, Hsieh WH, Chau LK, Chang GE*. Intensity-detection-based guided-mode-resonance optofluidic biosensing system for rapid, low-cost, label-free detection. Sens. Actuat. B 2017, 250, 659-666.

•Yu WN, Manik DHN, Huang CJ*, Chau LK*. Effect of elimination on antifouling and pH-responsive properties of the carboxybetaine materials. Chem. Commun. 2017, 53, 9143-9146.

•Chen YY, Fang YC, Lin SY, Lin YJ, Yen SY, Huang CH, Yang CY*, Chau LK*, Wang SC*. Corona-induced micro-centrifugal flows for concentration of Neisseria and Salmonella bacteria prior to their quantitation using antibody-functionalized SERS-reporter nanobeads. Microchim. Acta 2017, 184, 1021-1028.

•Tseng YT, Lu HY, Li JR, Tung WJ, Chen WH, Chau LK*. Facile functionalization of polymer surfaces in aqueous and polar organic solvents via 3-mercaptopropylsilatrane. ACS Appl. Mater. Interfaces 2016, 8, 34159-34169.

•Hsu CW, Huang CC, Sheu JH, Lin CW, Lin LF, Jin JS, Chau LK, Chen W*. Novel method for differentiating histological types of gastric adenocarcinoma by using confocal Raman microspectroscopy. PLoS One 2016, 11, e0159829.

•Chiang CC, Tuyen LD, Ren CR, Chau LK*, Wu CY, Huang PJ, Hsu CC*. Fabrication of Titania Inverse Opals by Multi-Cycle Dip-Infiltration for Optical Sensing. Photonics Nanostruct. 2016, 19, 48-54.

•Wu CW, Chiang CT, Chen CH, Chiang CS, Wang CT, Chau LK*. Self-referencing fiber optic particle plasmon resonance sensing system for real-time biological monitoring. Talanta 2016, 146, 291-298.

•Lyu SR*, Chiang CY, Cherng JY, Huang YC, Li CH, Lin YJ, Chang CM, Chau LK*. Role of medial abrasion phenomenon in the pathogenesis of knee osteoarthritis. Med. Hypotheses 2015, 85, 207-211.

•Ku YF, Li HY, Hsieh WH, Chau LK, Chang GE*. Enhanced sensitivity in injection-molded guided-mode-resonance sensors via low-index cavity layers. Opt. Express 2015, 23, 14850-14859.

•Li HY, Hsu WC, Liu KC, Chen YL, Chau LK, Hsieh S, Hsieh WH*. A low cost, label-free biosensor based on a novel double-sided grating waveguide coupler with sub-surface cavities. Sens. Actuat. B 2015, 206, 371-380.

•Lin HY, Huang CH, Hsieh WH, Liu LH, Lin YC, Chu CC, Wang ST, Kuo IT, Chau LK*, Yang CY*. On-line SERS detection of single bacterium using novel SERS nanoprobes and a microfluidic dielectrophoresis device. Small 2014, 10, 4700-4710.

•Chen WH, Tseng YT, Hsieh S, Liu WC, Hsieh CW, Wu CW, Huang CH, Lin HY, Chen CW, Lin PY, Chau LK*. Silanization of solid surfaces via mercaptopropylsilatrane: a new approach of constructing gold colloid monolayers. RSC Adv. 2014, 4, 46527-46535.

Hsieh ML, Chau LK*, Hon YS. Single-step approach for fabrication of vancomycin-bonded silica monolith as chiral stationary phase. J. Chromatogr. A 2014, 1358, 208-216.

•Tseng YT, Chen WH, Chau LK*. A new surface modifying material mercaptosilatrane for particle plasmon resonance sensor. Key Eng. Mater. 2014, 605, 123-126.

•Lin HY, Huang CH, Lu SH, Kuo IT, Chau LK*. Direct detection of orchid viruses using nanorod-based fiber optic particle plasmon resonance immunosensor. Biosens. Bioelectron. 2014, 51, 371-378.

•Chau LK, Chang HT, Eds. From Bioimaging to Biosensors - Noble Metal Nanoparticles in Biodetection, Pan Stanford Publishing, Singapore, 2013. [ISBN: 978-981-4267-24-3 (Hardback), 978-981-4303-10-1 (eBook)]

•Huang PJ, Chau LK. Slide- and microarray-based biosensors using noble metal nanoparticles. In From Bioimaging to Biosensors - Noble Metal Nanoparticles in Biodetection, Chau LK, Chang HT, Eds., Pan Stanford Publishing, Singapore, 2013; Chapter 4, pp. 57-76.

•Chau LK, Chiang CY, Hsu WT, Chen SH, Cheng SF. Optical waveguide-based biosensors using noble metal nanoparticles. In From Bioimaging to Biosensors - Noble Metal Nanoparticles in Biodetection, Chau LK, Chang HT, Eds., Pan Stanford Publishing, Singapore, 2013; Chapter 5, pp. 77-102.

•林幸瑩、黃貞翰、周禮君 「新型光學奈米探針:表面增強拉曼光譜標籤於生物檢測分析與應用」 化學 2013, 71, 243-252.

•Hsu WT, Feng GH*, Cho CL, Chau LK*. Nonspecific binding removal and specific binding regeneration using longitudinal acoustic wave. RSC Adv. 2013, 3, 16159-16166.

•Huang YC, Chiang CY, Li CH, Chang TC, Chiang CS, Chau LK*, Huang KW, Wu CW, Wang SC, Lyu SR*. Quantification of tumor necrosis factor-α and matrix metalloproteinases-3 in synovial fluid by fiber-optic particle plasmon resonance sensor. Analyst 2013, 138, 4599-4606.

•Lin HY, Huang CH, Chen SH, Liu YC, Chang WZ, Chau LK*. Tubular waveguide evanescent field absorption biosensor based on particle plasmon resonance for multiplex label-free detection. Biosens. Bioelectron. 2013, 41, 268-274.

•Chang TC, Wu CC, Wang SC*, Chau LK*, Hsieh WH. Using a fiber optic particle plasmon resonance biosensor to determine kinetic constants of antigen-antibody binding reaction. Anal. Chem. 2013, 85, 245-250.

•Lyu SR, Liu DS, Tzeng JE, Wang HS, Chau LK. Knee health promotion option for osteoarthritis knee: cartilage regeneration is possible. In Osteoarthritis - Diagnosis, Treatment and Surgery; Chen Q, Ed., InTech - Open Access Publisher, Rijeka, Croatia, 2012; Ch. 21, pp. 379-404. [ISBN: 978-953-51-0168-0]

•Tuyen LD, Liu AC, Huang CC, Tsai PC, Lin JH, Wu CW, Chau LK*, Yang TS, Minh LQ, Kan HC*, Hsu CC*. Doubly resonant surface-enhanced Raman scattering on gold nanorod decorated inverse opal photonic crystals. Opt. Express 2012, 20, 29266-29275.

•Lin HY, Huang CH*, Huang CC, Liu YC, Chau LK*. Multiple resonance fiber-optic sensor with time division multiplexing for multi-analyte detection. Opt. Lett. 2012, 37, 3969-3971.

•Tang JL, Chen CH, Chang TC, Wang SC, Chau LK, Wu WT*. Fabrication and characterization of a fused silica-based optical waveguide with femtosecond fiber laser pulses. Microsyst. Technol. 2012, 18, 1815-1821.

•Lin HY, Huang CH, Chau LK*. Fiber optic particle plasmon resonance sensor based on plasmonic light scattering interrogation. Ann. Phys. 2012, 524, 705-712.

•Huang CC, Huang CH, Kuo IT, Chau LK*, Yang TS*. Synthesis of silica-coated gold nanorod as Raman tags by modulating cetyltrimethylammonium bromide concentration. Colloids Surf. A 2012, 409, 61-68.

•Huang KW, Hsieh CW, Kan HC, Hsieh ML, Hsieh S*, Chau LK*, Cheng TE, Lin WT. Improved performance of aminopropylsilatrane over aminopropyltriethoxysilane as a linker for nanoparticle-based plasmon resonance sensors. Sens. Actuat. B 2012, 163, 207-215.

•Tay LL*, Huang PJ, Tanha J, Ryan S, Wu X, Hulse J, Chau LK*. Silica encapsulated SERS nanoprobe conjugated to the bacteriophage tailspike protein for targeted detection of Salmonella. Chem. Commun. 2012, 48, 1024-1026.

•Chau LK*, Kuo CW, Chu YW, Liao SH, Lin YT, Wang CRC*. A fiber optic particle plasmon resonance biosensing platform based on detection of light scattering intensity from the proximal end. J. Chin. Chem. Soc. 2011, 58, 786-792.

•周禮君 「新一代生物感測器專題報導簡介」 化學 2011, 69, 191-192.

•Li HY, Chen CW, Yang HC, Chau LK, Hsieh WH*. Low cost, rapid fabrication of durable molds of grating arrays for nanoimprint lithography. Microelectron. Eng. 2011, 88, 3062-3066.

•Hsu WT, Hsieh WH, Cheng SF, Jen CP, Wu CC, Li CH, Lee CY, Li WY, Chau LK*, Chiang CY, Lyu SR. Integration of fiber optic-particle plasmon resonance biosensor with microfluidic chip. Anal. Chim. Acta 2011, 697, 75-82.

•Chen CH, Weng TT, Wang JN, Cheng CW, Tang JL*, Chau LK*, Wu WT*. Novel multiphase D-shaped fiber optic sensor realized by femtosecond laser machining. J. Laser Micro/Nanoeng. 2011, 6, 81-86.

•陳建興、吳瑋特、湯兆崙、周禮君 「飛秒雷射精微加工系統製作光纖感測器」 科儀新知 2011, 32, 53-60.

•Chiang CY, Hsieh ML, Huang KW, Chau LK*, Chang CM, Lyu SR*. Fiber-optic particle plasmon resonance sensor for detection of interleukin-1 in synovial fluids. Biosens. Bioelectron. 2010, 26, 1036-1042.

•Chen CH, Tsao TC, Li WY, Shen WC, Tang JL, Jen CP, Cheng CW, Chau LK, Wu WT*. Novel U-shape gold nanoparticles-modified optical fiber for localized plasmon resonance sensing. Microsyst. Technol. 2010, 16, 1207-1214.

•林建宏、黃家琪、杜名碧、巫晟逸、楊子萱、周禮君、張天立、林宏彝、甘宏志、許佳振 「結合飛秒雷射直寫技術與化學修飾方法製作三維表面增強拉曼散射基板」 物理雙月刊 2010, 32, 203-207.

•章嘉明、李佳瑜、黃玶吉、王少君、周禮君 「貴金屬奈米粒子在生醫檢測上的應用實例」 台灣奈米會刊 2010, 21, 44-50.

•章嘉明、周禮君 「光纖式奈米生物感測儀」 量測資訊 2010, 133, 42-45.

•章嘉明、李佳瑜、江昌獄、周禮君 「免標定生物感測器」 科儀新知 2010, 31, 48-55.

•謝銘隆、周禮君 「貴金屬奈米粒子定域化表面電漿共振波在生物感測的應用」 化學 2010, 68, 21-32.

•Chen CH, Chao TC, Li WY, Shen WC, Cheng CW, Tang JL, Chau LK*, Wu WT*. Novel D-type fiber optic localized plasmon resonance sensor realized by femtosecond laser engraving. J. Laser Micro/Nanoeng. 2010, 5, 1-5.

•Chuang Y, Lee CY, Lu SH, Wang SC*, Chau LK*, Hsieh WH. Using ac field induced electro-osmosis to accelerate biomolecular binding in fiber optic sensing chips with micro-structures. Anal. Chem. 2010, 82, 1123-1127.

•Wu CY, Huang CC, Jhang JS, Liu AC, Chiang CC, Hsieh ML, Huang PJ, Tuyen LD, Minh LQ, Yang TS, Chau LK, Kan HC*, Hsu CC*. Hybrid surface-enhanced Raman scattering substrate from gold nanoparticle and photonic crystal: maneuverability and uniformity of Raman spectra. Opt. Express 2009, 17, 21522-21529.

•Huang PJ, Tay LL*, Tanha J, Ryan S, Chau LK*. Single-domain antibody-conjugated nanoaggregate embedded beads for targeted detection of pathogenic bacteria. Chem. Eur. J. 2009, 15, 9330-9334.

•Huang CT, Jen CP*, Chao TC, Wu WT, Li WY, Chau LK. A novel design of grooved fibers for fiber-optic localized plasmon resonance biosensors. Sensors 2009, 9, 6456-6470.

•Huang PJ, Chau LK*, Yang TS*, Tay LL, Lin TT. Nanoaggregate-embedded beads as novel Raman labels for bio-detection. Adv. Funct. Mater. 2009, 19, 242-248.

•Hsieh ML, Li GY, Chau LK*, Hon YS. Single-step approach to -cyclodextrin-bonded silica as monolithic stationary phases for CEC. J. Sep. Sci. 2008, 31, 1819-1827.

•Chang CY, Chau LK*, Hu WP, Wang CY, Liao JH. Nickel hexacyanoferrate multilayers on functionalized mesoporous silica supports for selective sorption and sensing of cesium. Microporous Mesoporous Mater. 2008, 109, 505-512.

•Wang SC*, Chen HP, Lai YW, Chau LK, Chuang YC, Chen YJ. Using nonlinear AC electrokinetics vortex flow to enhance catalytic activities of sol-gel encapsulated trypsin in microfluidic devices. Biomicrofluidics 2007, 1, 034104.

•Lai NS, Wang CC, Chiang HL, Chau LK*. Detection of antinuclear antibodies by a colloidal gold-modified optical fiber: comparison with ELISA. Anal. Bioanal. Chem. 2007, 388, 901-907.

•Lin CL, Shih CL, Chau LK*. Amperometric L-lactate sensor based on sol-gel processing of an enzyme-linked silicon alkoxide. Anal. Chem. 2007, 79, 3757-3763.

•Chen CD, Cheng SF, Chau LK*, Wang CRC*. Sensing capability of the localized surface plasmon resonance of gold nanorods. Biosens. Bioelectron. 2007, 22, 926-932.

•Tang JL*, Cheng SF, Hsu WT, Chiang TY, Chau LK*. Fiber optic biochemical sensing with a colloidal gold-modified long period fiber grating. Sens. Actuat. B 2006, 119, 105-109.

•Lin TA, Li GY, Chau LK*. Sol-gel monolithic anion-exchange column for capillary electrochromatography. Anal. Chim. Acta 2006, 576, 117-123.

•許偉庭、周禮君 「貴金屬奈米粒子感測器」 科儀新知 2006, 28, 38-45.

•侯鎮球、許偉庭、周禮君 「高中職奈米材料課程實驗之設計—利用化學與電化學還原法製備銀奈米粒子」 化學 2006, 64, 305-312.

•Chau LK*, Lin YF, Cheng SF, Lin TJ*. Fiber-optic chemical and biochemical probes based on localized surface plasmon resonance. Sens. Actuat. B 2006, 113, 100-105.

•許智偉、鄭淑芳、周禮君 「光子晶體之製備及其於化學感測上的應用」 化學 2005, 63, 431-442.

•Cheng SF, Chau LK*, Pao KC. Sol-gel-coated poly(methyl methacrylate) as a substrate for localized surface plasmon resonance biosensors. J. Biomed. Nanotechnol. 2005, 1, 143-150.

•Lin CL, Tien P, Chau LK*. Electrochemical behavior of an anion-exchanger modified electrode prepared by sol-gel processing of an organofunctional silicon alkoxide. Electrochim. Acta 2004, 49, 573-580.

•Lin CC, Chau LK*, Chang SS, Wang CRC*. Langmuir-Blodgett films of alkanethiolate gold nanorods. J. Chin. Chem. Soc. 2003, 50, 1015-1021.

•Cheng SF, Chau LK*. Colloidal gold modified optical fibers for chemical and biochemical sensing. Anal. Chem. 2003, 75, 16-21.

•蔡裕榮、周禮君 「以溶膠凝膠法製備透明導電氧化物薄膜的探討」 化學 2002, 60, 307-318.

•周禮君、林明祥、謝嘉育、余俊慶 「奈米結構含鈦氧化物光電催化材料與環境及能源」 光訊 2002, 95, 9-12.

•Hsieh YY, Lin YH, Yang JS, Wei GT*, Tien P, Chau LK*. Electroosmotic flow controllable coating on capillary surface by sol-gel process for capillary electrophoresis. J. Chromatogr. A 2002, 952, 255-266.

•Li CI, Lin YH, Shih CL, Tsaur JP, Chau LK*. Sol-gel encapsulation of lactate dehydrogenase for optical sensing of L-lactate. Biosens. Bioelectron. 2002, 17, 323-330.

•Yeh TC, Tien P, Chau LK*. Fiber-optic evanescent-wave absorption copper(II) sensor based on sol-gel-derived organofunctionalized silica cladding. Appl. Spectrosc. 2001, 55, 1320-1326.

•Tseng JY, Lin MH, Chau LK*. Preparation of colloidal gold multilayers with 3-(mercaptopropyl)-trimethoxysilane as a linker molecule. Colloids Surf. A 2001, 182, 239-224.

•Tien P, Chau LK*, Shieh YY, Lin WC, Wei GT*. Anion-exchange material with pH-switchable surface charge prepared by sol-gel processing of an organofunctional silicon alkoxide. Chem. Mater. 2001, 13, 1124-1130.

•田珮、周禮君 「有機無機混成溶凝膠及其應用」 強化塑膠廣用新知 2001, 86, 24-35.

•周禮君、田珮 「有機矽烷氧基前驅物衍生的有機無機混成溶凝膠材料」 化工技術 2000, 8, 152-164.

•Wang CC, Li CI, Lin YH, Chau LK*. Detection of riboflavin based on fluorescence enhancement of evanescent-wave excited -cyclodextrin complex in sol-gel-derived porous coatings. Appl. Spectrosc. 2000, 54, 15-19.

•Tien P, Chau LK*. Novel sol-gel-derived material for separation and optical sensing of metal ions: propyl-ethylenediamine triacetate functionalized silica. Chem. Mater. 1999, 11, 2141-2147.

•Chau LK*, Osborn T, Wu CC, Yager P*. Microfabricated silicon flow cell for optical monitoring of biological fluids. Anal. Sci. 1999, 15, 721-724.