Ezel Boyacı

E-mail
ezel@metu.edu.tr
Department
Department of Chemistry
Scopus Author ID
Web of Science Researcher ID
A simplified molecular imprinting strategy through electrospinning of polyacrylonitrile for thin film microextraction of selected pesticides
Şahin, Alper; Akpinar, Yeliz; Yıldırım, Erol; Eroğlu, Ahmet E; Boyacı, Ezel (2026-01-25)
Molecularly imprinted polymers (MIPs) have been extensively used as selective extractive phases for sample preparation because of their analyte-selective binding sites. However, MIP preparation requires optimized monomer-t...
Assessment of thermal and solvent stable SPME fibers for volatilome investigation through in vitro experiments with cancer cell lines
Filipiak, Wojciech; Çakmakçı, Merve; Sevgen, Sılanur; Szeliska, Paulina; Jaroch, Karol; Kara, Atakan; Kahremanoğlu, Kübra; Bojko, Barbara; Boyacı, Ezel (2025-12-08)
Background: solid phase microextraction (SPME) was introduced to bioanalysis years ago, but still, it did not find its place in routine analysis, despite the many advantages it offers. The limited number of commercial devi...
Evaluation of performance and matrix compatibility of mixed mode C18-SCX SPME fibers for compounds with different physicochemical properties
Tascon, Marcos; Boyacı, Ezel; Reyes-Garcés, Nathaly; Pawliszyn, Janusz (2025-08-01)
Solid-phase microextraction (SPME) has evolved significantly since its inception, yet challenges remain in developing coatings fully compatible with LC-MS that combine broad polarity coverage with biocompatibility for comp...
Protocol for the upgraded high-throughput SPME system for biocompatible in vitro extraction from small volume for metabolomics and pharmaceutical assays
Szeliska, Paulina; Jaroch, Karol; Charemski, Bartłomiej; Kahremanoğlu, Kübra; Çetin, Enes; Boyacı, Ezel; Bojko, Barbara (2025-06-01)
This study presents an updated application of Solid Phase Microextraction (SPME) technology for high-throughput, time-course metabolomic analysis in in vitro cell culture models. SPME, a versatile and minimally invasive sa...
Assessment of thermal and solvent stable SPME fibers for metabolomics studies performed in living systems
Kahremanoğlu, Kübra; Jaroch, Karol; Szeliska, Paulina; Filipiak, Wojciech; Charemski, Bartłomiej; Żuchowska, Karolina; Çetin, Enes; Eroğlu, Ahmet E.; Bojko, Barbara; Boyacı, Ezel (2025-05-15)
Solid phase microextraction (SPME), as a sampling/sample preparation technique, offers unique solutions for the most challenging applications, including metabolomics studies of living systems. However, for global metabolom...
A critical review of bioanalytical and clinical applications of solid phase microextraction
Sevgen, Sılanur; Kara, Gökşin; Kir, Aysegul Seyma; Şahin, Alper; Boyacı, Ezel (2025-01-01)
Studying the functions, mechanisms, and effects of drugs and other exogenous compounds on biological systems, together with investigations performed to understand biosystems better, comprises one of the most fascinating ar...
13-th Annual International Symposium on Physical and Analytical Chemistry at TSU
Şahin, Alper; TEMEL, EZGİ RANA; Okutan, Merve; SALİH, BEKİR; EROĞLU, AHMET EMİN; Boyacı, Ezel (2024-12-20)
New Developments in Bioanalytical Applications of Solid Phase Microextraction
Boyacı, Ezel (2024-09-15)
Novel electrospun-based extractive probes for rapid determination of clinically important compounds in human plasma
Temel, Ezgi Rana; Eroğlu, Ahmet E.; SALİH, BEKİR; Boyacı, Ezel (2024-07-11)
Background: Coated blade spray (CBS) represents an innovative approach that utilizes solid-phase microextraction principles for sampling and sample preparation. When combined with ambient mass spectrometry (MS), it can als...
Development and functionalization of electrospun fiber coated thin film microextraction devices for rapid mass spectrometric determination of biologically important polar molecules
Öztürk, Merve; SALİH, BEKİR; Eroğlu, Ahmet E.; Boyacı, Ezel (2024-06-15)
Rapid diagnosis of diseases is one of the challenging areas in clinical research. From the analytical chemist's perspective, the main challenges are isolating the compounds from the bio-specimen and lengthy analysis times....
Citation Formats