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1.
Soc Sci Med ; 347: 116773, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38513563

RESUMO

Focus on patient and public involvement and engagement (PPIE) is increasing in health policy and research governance. PPIE is considered by some to be a democratic right, and by others to be a way to improve health care and research outcomes and implementation. Most recently, policy makers, funders and (clinical) research institutions are making PPIE a strategic requirement for health research urging researchers to invite patients and relatives into their research activities. Our study is based in a Danish university hospital where PPIE has been introduced as one of five strategic research goals. We investigated how researchers experienced this new practice and how their research practices connect to the wider context of the Danish health care system. Ten cases were studied during a year using observations, interviews, and document analysis. As our method of inquiry, we used institutional ethnography to look at researchers' work from their perspective and to understand how PPIE practices are part of a larger institutional research culture reaching far beyond the individual. We found that current research culture has implications for the selection of patients and relatives and for what they are asked to do. Researchers who experienced that PPIE outcomes aided their existing research practices felt motivated. Researchers who engaged patients and relatives before it was a strategy, were ideologically driven and their approaches resulted in an increased diversity of inclusion and researcher assimilation. These findings add to the current knowledge on PPIE practices and help us understand that further development towards collaborative research practices require a change in key performance indicators and training and perhaps call for attention to our shared acceptance of knowledge generation in research.


Assuntos
Política de Saúde , Participação do Paciente , Humanos , Instalações de Saúde , Antropologia Cultural
2.
Res Involv Engagem ; 9(1): 43, 2023 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-37322525

RESUMO

BACKGROUND: Recent studies mention a need to investigate partnership roles and dynamics within patient and public involvement and engagement (PPIE) in health research, and how impact and outcomes are achieved. Many labels exist to describe involvement processes, but it is unknown whether the label has implications on partnerships and outcomes. This rapid review investigates how roles between patients, relatives and researchers in a broad variety of PPIE activities in health research are described in peer reviewed papers and explores what enables these partnerships. METHODS: Rapid review of articles published between 2012 and February 2022 describing, evaluating, or reflecting on experiences of PPIE in health research. All research disciplines and research areas were eligible. Four databases (Medline, Embase, PsychInfo and CINAHL) were searched between November 2021 and February 2022. We followed PRISMA guidelines and extracted descriptive factors: year, origin, research area and discipline, study focus, framework used and co-authorship. On a selection of articles, we performed a narrative analysis of partnership roles using Smits et al.'s. Involvement Matrix. Lastly, we performed a meta synthesis of reported enablers and outcomes of the partnerships. Patients and Relatives (PRs) have been involved in the whole rapid review process and are co-authors of this article. RESULTS: Seventy articles from various research disciplines and areas were included. Forty articles were selected for a narrative analysis of the role description of PRs and researchers, and a meta synthesis of enablers and outcomes. Most articles described researchers as decision-makers throughout the research cycle. PRs most often were partners when they were included as co-authors; they were mostly partners in the design, analysis, write-up, and dissemination stages. Enablers of partnerships included: PR training, personality of PRs and communication skills, trust, remuneration and time. CONCLUSIONS: Researchers' decision-making roles gives them control of where and when to include PRs in their projects. Co-authorship is a way of acknowledging patients' contributions which may lead to legitimation of their knowledge and the partnership. Authors describe common enablers, which can help future partnership formation.


This article investigates how other articles describe the roles patients, relatives and researchers have in patient and public involvement activities in health research. It also investigates which factors are supportive of creating these research partnerships. We searched four health research databases and found 70 relevant articles which somehow evaluated patient involvement activities in research. From these 70 articles we chose 40 which we closely investigated for descriptions of roles in the partnerships between researchers and patients and relatives. For this, we used a tool called the Involvement Matrix which uses five different roles: Listener (who is given information), Co-thinker (who is asked to give opinion), Advisor (who gives (un)solicited advice), Partner (who works as an equal partner) and Decision-maker (Who takes initiative and (final) decisions). We found that it is often researchers who take on the role of Decision-maker and that involvement often happens on their terms. We noticed that patients and relatives most often had the role of partner, when they were listed as co-authors of the article. This shows co-authorship as an authorization of their work during patient and public involvement activities. We found that patient and relative training, patients' and relatives' personality and communication skills, trust, financial reimbursement, and time were mentioned most often as enablers of good research partnerships.

3.
RSC Adv ; 12(54): 35072-35082, 2022 Dec 06.
Artigo em Inglês | MEDLINE | ID: mdl-36540267

RESUMO

Eight d-metal-containing N-butylpyridinium ionic liquids (ILs) with the nominal composition (C4Py)2[Ni0.5M0.5Cl4] or (C4Py)2[Zn0.5M0.5Cl4] (M = Cu, Co, Mn, Ni, Zn; C4Py = N-butylpyridinium) were synthesized, characterized, and investigated for their optical properties. Single crystal and powder X-ray analysis shows that the compounds are isostructural to existing examples based on other d-metal ions. Inductively coupled plasma optical emission spectroscopy measurements confirm that the metal/metal ratio is around 50 : 50. UV-Vis spectroscopy shows that the optical absorption can be tuned by selection of the constituent metals. Moreover, the compounds can act as an optical sensor for the detection of gases such as ammonia as demonstrated via a simple prototype setup.

4.
Chemistry ; 28(64): e202201068, 2022 Nov 16.
Artigo em Inglês | MEDLINE | ID: mdl-35789121

RESUMO

Fifteen N-butylpyridinium salts - five monometallic [C4 Py]2 [MBr4 ] and ten bimetallic [C4 Py]2 [M0.5 a M0.5 b Br4 ] (M=Co, Cu, Mn, Ni, Zn) - were synthesized, and their structures and thermal and electrochemical properties were studied. All the compounds are ionic liquids (ILs) with melting points between 64 and 101 °C. Powder and single-crystal X-ray diffraction show that all ILs are isostructural. The electrochemical stability windows of the ILs are between 2 and 3 V. The conductivities at room temperature are between 10-5 and 10-6  S cm-1 . At elevated temperatures, the conductivities reach up to 10-4  S cm-1 at 70 °C. The structures and properties of the current bromide-based ILs were also compared with those of previous examples using chloride ligands, which illustrated differences and similarities between the two groups of ILs.

5.
ChemistryOpen ; 10(2): 272-295, 2021 02.
Artigo em Inglês | MEDLINE | ID: mdl-33751846

RESUMO

Metal sulfides are among the most promising materials for a wide variety of technologically relevant applications ranging from energy to environment and beyond. Incidentally, ionic liquids (ILs) have been among the top research subjects for the same applications and also for inorganic materials synthesis. As a result, the exploitation of the peculiar properties of ILs for metal sulfide synthesis could provide attractive new avenues for the generation of new, highly specific metal sulfides for numerous applications. This article therefore describes current developments in metal sulfide nanoparticle synthesis as exemplified by a number of highlight examples. Moreover, the article demonstrates how ILs have been used in metal sulfide synthesis and discusses the benefits of using ILs over more traditional approaches. Finally, the article demonstrates some technological challenges and how ILs could be used to further advance the production and specific property engineering of metal sulfide nanomaterials, again based on a number of selected examples.

6.
Chemistry ; 26(72): 17504-17513, 2020 Dec 23.
Artigo em Inglês | MEDLINE | ID: mdl-32841435

RESUMO

Thirteen N-butylpyridinium salts, including three monometallic [C4 Py]2 [MCl4 ], nine bimetallic [C4 Py]2 [M1-x a Mx b Cl4 ] and one trimetallic compound [C4 Py]2 [M1-y-z a My b Mz c Cl4 ] (M=Co, Cu, Mn; x=0.25, 0.50 or 0.75 and y=z=0.33), were synthesized and their structure and thermal and electrochemical properties were studied. All compounds are ionic liquids (ILs) with melting points between 69 and 93 °C. X-ray diffraction proves that all ILs are isostructural. The conductivity at room temperature is between 10-4 and 10-8  S cm-1 . Some Cu-based ILs reach conductivities of 10-2  S cm-1 , which is, however, probably due to IL dec. This correlates with the optical bandgap measurements indicating the formation of large bandgap semiconductors. At elevated temperatures approaching the melting points, the conductivities reach up to 1.47×10-1  S cm-1 at 70 °C. The electrochemical stability windows of the ILs are between 2.5 and 3.0 V.

7.
Chemphyschem ; 20(10): 1311-1315, 2019 05 16.
Artigo em Inglês | MEDLINE | ID: mdl-31017710

RESUMO

Quantum sieving of hydrogen isotopes is experimentally studied in isostructural hexagonal metal-organic frameworks having 1-D channels, named IFP-1, -3, -4 and -7. Inside the channels, different molecules or atoms restrict the channel diameter periodically with apertures larger (4.2 Šfor IFP-1, 3.1 Šfor IFP-3) and smaller (2.1 Šfor IFP-7, 1.7 Šfor IFP-4) than the kinetic diameter of hydrogen isotopes. From a geometrical point of view, no gas should penetrate into IFP-7 and IFP-4, but due to the thermally induced flexibility, so-called gate-opening effect of the apertures, penetration becomes possible with increasing temperature. Thermal desorption spectroscopy (TDS) measurements with pure H2 or D2 have been applied to study isotope adsorption. Further TDS experiments after exposure to an equimolar H2 /D2 mixture allow to determine directly the selectivity of isotope separation by quantum sieving. IFP-7 shows a very low selectivity not higher than S=2. The selectivity of the materials with the smallest pore aperture IFP-4 has a constant value of S≈2 for different exposure times and pressures, which can be explained by the 1-D channel structure. Due to the relatively small cavities between the apertures of IFP-4 and IFP-7, molecules in the channels cannot pass each other, which leads to a single-file filling. Therefore, no time dependence is observed, since the quantum sieving effect occurs only at the outermost pore aperture, resulting in a low separation selectivity.

8.
Langmuir ; 33(42): 11170-11179, 2017 10 24.
Artigo em Inglês | MEDLINE | ID: mdl-28793757

RESUMO

Four metal-organic frameworks with similar topology but different chemical environment inside the pore structure, namely, IFP-1, IFP-3, IFP-5, and IFP-7, have been investigated with respect to the separation potential for olefin-paraffin mixtures as well as the influence of the different linkers on adsorption properties using experiments and Monte Carlo simulations. All IFP structures show a higher adsorption of ethane compared to ethene with the exception of IFP-7 which shows no selectivity in breakthrough experiments. For propane/propane separation, all adsorbents show a higher adsorption for the olefin. The experimental results agree quite well with the simulated values except for the IFP-7, which is presumably due to the flexibility of the structure. Moreover, the experimental and simulated isotherms were confirmed with breakthrough experiments that render IFP-1, IFP-3, and IFP-5 as suitable for the purification of ethene from ethane.

9.
Inorg Chem ; 54(20): 10073-80, 2015 Oct 19.
Artigo em Inglês | MEDLINE | ID: mdl-26447991

RESUMO

In this work, we report three isostructural 3D frameworks, named IFP-11 (R = Cl), IFP-12 (R = Br), and IFP-13 (R = Et) (IFP = Imidazolate Framework Potsdam) based on a cobalt(II) center and the chelating linker 2-substituted imidazolate-4-amide-5-imidate. These chelating ligands were generated in situ by partial hydrolysis of 2-substituted 4,5-dicyanoimidazoles under microwave (MW)-assisted conditions in DMF. Structure determination of these IFPs was investigated by IR spectroscopy and a combination of powder X-ray diffraction (PXRD) with structure modeling. The structural models were initially built up from the single-crystal X-ray structure determination of IFP-5 (a cobalt center and 2-methylimidazolate-4-amide-5-imidate linker based framework) and were optimized by using density functional theory calculations. Substitution on position 2 of the linker (R = Cl, Br, and Et) in the isostructural IFP-11, -12, and -13 allowed variation of the potential pore window in 1D hexagonal channels (3.8 to 1.7 Å). The potential of the materials to undergo specific interactions with CO2 was measured by the isosteric heat of adsorption. Further, we resynthesized zinc based IFPs, namely IFP-1 (R = Me), IFP-2 (R = Cl), IFP-3 (R = Br), and IFP-4 (R = Et), and cobalt based IFP-5 under MW-assisted conditions with higher yield. The transition from a nucleation phase to the pure crystalline material of IFP-1 in MW-assisted synthesis depends on reaction time. IFP-1, -3, and -5, which are synthesized by MW-assisted conditions, showed an enhancement of N2 and CO2, compared to the analogous conventional electrical (CE) heating method based materials due to crystal defects.

10.
Chemistry ; 18(37): 11630-40, 2012 Sep 10.
Artigo em Inglês | MEDLINE | ID: mdl-22865659

RESUMO

We report on a new series of isoreticular frameworks based on zinc and 2-substituted imidazolate-4-amide-5-imidate (IFP-1-4, IFP = imidazolate framework Potsdam) that form one-dimensional, microporous hexagonal channels. Varying R in the 2-substitued linker (R = Me (IFP-1), Cl (IFP-2), Br (IFP-3), Et (IFP-4)) allowed the channel diameter (4.0-1.7 Å), the polarisability and functionality of the channel walls to be tuned. Frameworks IFP-2, IFP-3 and IFP-4 are isostructural to previously reported IFP-1. The structures of IFP-2 and IFP-3 were solved by X-ray crystallographic analyses. The structure of IFP-4 was determined by a combination of PXRD and structure modelling and was confirmed by IR spectroscopy and (1)H MAS and (13)C CP-MAS NMR spectroscopy. All IFPs showed high thermal stability (345-400 °C); IFP-1 and IFP-4 were stable in boiling water for 7 d. A detailed porosity analysis was performed on the basis of adsorption measurements by using various gases. The potential of the materials to undergo specific interactions with CO(2) was investigated by measuring the isosteric heats of adsorption. The capacity to adsorb CH(4) (at 298 K), CO(2) (at 298 K) and H(2) (at 77 K) at high pressure were also investigated. In situ IR spectroscopy showed that CO(2) is physisorbed on IFP-1-4 under dry conditions and that both CO(2) and H(2)O are physisorbed on IFP-1 under moist conditions.


Assuntos
Amidas/química , Imidazóis/química , Imidoésteres/química , Compostos Organometálicos/química , Compostos Organometálicos/síntese química , Zinco/química , Cristalografia por Raios X , Modelos Moleculares , Estrutura Molecular , Porosidade , Propriedades de Superfície
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